Form EIA-1605(b) Voluntary Reporting of Greenhouse Gases

Voluntary Reporting of Greenhouse Gases

Form EIA-1605_04-25-07

Voluntary Reporting of Greenhouse Gases

OMB: 1905-0194

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Form EIA-1605
Voluntary Reporting of Greenhouse Gases
Revised Pursuant to 10 CFR Part 300
Guidelines for Voluntary Greenhouse Gas Reporting

Energy Information Administration
U.S. Department of Energy
April 25, 2007

TABLE OF CONTENTS
SCHEDULE I. ENTITY INFORMATION ...................................................................................................... 1
Section 1. Entity Statement .................................................................................................................... 1
Section 2. Entity Emissions Inventory .................................................................................................... 7
Part A. Aggregated Emissions by Gas (for independently verified reports only) ............................ 7
1. Aggregated Domestic Emissions by Gas .............................................................................. 7
2. Aggregated Foreign Emissions by Gas................................................................................. 8
Part B. Inventory of Domestic Emissions and Carbon Flux ........................................................... 10
1. Direct Emissions .................................................................................................................. 10
2. Indirect Emissions from Purchased Energy ........................................................................ 16
3. Other Indirect Emissions ..................................................................................................... 17
4. Terrestrial Carbon Fluxes and Stocks ................................................................................. 18
5. De Minimis Emissions Sources ........................................................................................... 22
Part C. Inventory of Foreign Emissions and Carbon Flux............................................................. 23
Part D. Total Emissions and Carbon Flux..................................................................................... 24
1. Total Domestic Emissions and Carbon Flux ....................................................................... 24
2. Total Foreign Emissions and Carbon Flux .......................................................................... 25
Part E. Emissions Inventory Rating Summary.............................................................................. 26
Section 3. Emissions Offsets .............................................................................................................. 28
Part A. Offsets Obtained by Agreement with Another Reporter ................................................... 28
Part B. Offsets Obtained by Agreement with a Non-reporter ....................................................... 29
Section 4. Entity-level Emission Reductions ...................................................................................... 30
SCHEDULE II. SUBENTITY INFORMATION ..........................................................................................
Section 1. Subentity Statement ...........................................................................................................
Section 2. Subentity Emissions Inventory ..........................................................................................
Section 3. Summary of Emission Reductions from Subentities .........................................................

31
31
33
34

SCHEDULE III. EMISSION REDUCTIONS SUMMARY ...........................................................................
Section 1. Registered Emission Reductions .......................................................................................
Part A. Domestic Net Entity-level Reductions and Carbon Storage .............................................
Part B. Foreign Net Entity-level Reductions and Carbon Storage ................................................
Section 2. Reported Emission Reductions ..........................................................................................
Part A. Domestic Net Entity-level Reductions and Carbon Storage .............................................
Part B. Foreign Net Entity-level Reductions and Carbon Storage ................................................

35
35
35
36
37
37
39

SCHEDULE IV. VERIFICATION AND CERTIFICATION......................................................................... 41
Section 1. Independent Verification..................................................................................................... 41
Section 2. Reporter Self-certification ................................................................................................... 44
Addendum A. Inventory of Foreign or Subentity Emissions................................................................A1
Part A. Aggregated Emissions by Gas (for independently verified reports only) ................................A1
Part B. Inventory of Emissions and Carbon Flux..................................................................................A3
1. Direct Emissions ........................................................................................................................A3
2. Indirect Emissions from Purchased Energy...............................................................................A9
3. Other Indirect Emissions ..........................................................................................................A10
4. Terrestrial Carbon Fluxes and Stocks......................................................................................A11
5. De Minimis Emissions Sources................................................................................................A15
Part C. Total Foreign or Subentity Emissions and Carbon Flux.........................................................A16
Addendum B. Emission Reduction Methods .........................................................................................B1
B1. Changes in Emissions Intensity .....................................................................................................B1
B2. Changes in Absolute Emissions.....................................................................................................B4
B3. Changes in Carbon Storage...........................................................................................................B7
B4. Changes in Avoided Emissions .....................................................................................................B9
Form EIA-1605 ˿ Voluntary Reporting of Greenhouse Gases

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B5. Emission Reductions from Energy Generation and Distribution..................................................B11
B6. Reductions from Coal Mine Methane Gas Recovery...................................................................B13
B7. Landfill Methane Recovery...........................................................................................................B18
B8. Geologic Sequestration................................................................................................................B23
B9. Electricity Transmission and Distribution Improvements .............................................................B26
B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities .................B29
B11. Capture of Methane from Anaerobic Digestion of Animal Waste ..............................................B34
B12. Recycling of Fly Ash...................................................................................................................B37
B13. Demand-Side Management and Other Reduction Programs ....................................................B40
B14. Combined Heat and Power ........................................................................................................B43
B15. Other Action-Specific Methods ..................................................................................................B47
B16. Destruction of Chlorofluorocarbons ...........................................................................................B50
Addendum C. Country-specific Factors Used to Estimate Emissions from Foreign Sources .........C1

Form EIA-1605 ˿ Voluntary Reporting of Greenhouse Gases

ii

NOTE: 18 U.S.C. §1001 makes it a criminal offense for any person knowingly and willfully to
make to any Agency or Department of the United States any false, fictitious, or fraudulent
statements as to any matter within its jurisdiction.
REPORTING YEAR _______________
(Reporting Year is the calendar year for which you are reporting emissions. If this is a Start Year report,
enter the Start Year, which is the last calendar year of the initial Base Period.)

SCHEDULE I. ENTITY INFORMATION
SECTION 1. ENTITY STATEMENT
1. Enter Entity Identification:
Entity Name: _______________________________________
Address 1: _____________________________
Address 2: _____________________________
City:______________________ State: _____ Zip: _____-____
Entity URL : ________________________________________
Entity Tax Payer Identification Number (optional): ___________________

2. Enter Contact Information:
Contact Name: ______________________________________
Title: ______________________________________________
 Contact address is the same as Entity Address
Address 1: _____________________________
Address 2: _____________________________
City:______________________ State: _____ Zip: _____-____
Tel: (__ __ __) __ __ __ -__ __ __ __ ext.: _______
Fax: (__ __ __) __ __ __ -__ __ __ __
E-Mail: ____________________________________________
3. Enter Report Characteristics
a. Report Type (please check one):
 Start Year Report
 Reporting Year Report
b. Entity Type (please check one):
 Large emitter (more than 10,000 metric tons carbon dioxide equivalent annually) intending to
register emission reductions
 Small emitter (less than or equal to 10,000 metric tons carbon dioxide equivalent annually)
intending to register emission reductions
If this is a Start Year Report, enter the total entity-wide Base Period annual emissions for
the entity:
_______________________ metric tons CO2 equivalent
If this is a Reporting Year report, enter the total entity-wide Reporting Year emissions for
the entity, if required, and check the box indicating the reason emissions were estimated:
_______________________ metric tons CO2 equivalent
 Five years have elapsed since last estimate of entity-wide emissions were reported
 Emissions have changed significantly since previous report
 Emitter intending to report but not register emission reductions
c.

Scope of Inventory:
 Entity-wide

Form EIA-1605 – Schedule I, Section 1. Entity Statement

1

 Partial. Indicate the selected elements of the entity, selected gases, or selected sources
included and/or excluded below:
__________________________________________________________________________
__________________________________________________________________________
__________________________________________________________________________
d. Subentities (please check one):
This report includes subentity reports:

 Yes

 No

e. Independent Verification
This report been verified by an independent third party:  Yes

 No

4. Indicate Any Significant Changes to Previous Entity Statement (not applicable for Start Year reports)
 The entity has not undergone significant changes since the last Voluntary Reporting of
Greenhouse Gases report
 The entity has undergone significant changes since the last Voluntary Reporting of Greenhouse
Gases report was filed. Please check the appropriate box below:

Data are being resubmitted for the base period:

For the entire entity

For one or more subentities

New base period has been selected:

For the entire entity (please describe):_______________________________
______________________________________________________________
 For one or more subentities (describe in relevant subentity statement (Schedule II)

Changes have been made in the entity's scope or organizational boundaries, of the
following nature:

Acquisition or divestiture of discrete business units, subsidiaries, facilities or
plants
Describe: _____________________________________

Closure or opening of significant facilities
Describe: ______________________________________

Transfer of economic activity to or from specific operations covered by a
previous report
Describe: ______________________________

Significant changes in land holdings
Describe: _____________________________________

Higher level of aggregation than in the previous year.
List subsidiary entities now included, including a listing of any non-U.S.
operations added and the specific countries in which the foreign operations are
located:__________________________________________________________
________________________________________________________________

Changes in activity or operations please specify:

Change in output

Change in contractual arrangements

Change in equipment and processes

Change in outsourcing or insourcing of significant activities
Describe the change and explain its influence on reported emissions or
sequestration: ___________________________________________________
________________________________________________________________

Emission reduction calculation method changed

Other change, not listed above, please describe: _______________________________
______________________________________________________________________

Form EIA-1605 – Schedule I, Section 1. Entity Statement

2

5. Identify the Entity’s Primary Economic Activities (NAICS Code)
Identify the primary (and secondary, if applicable) 3-digit North American Industrial Classification
System (NAICS) code for the entity (a list of NAICS codes is offered in Appendix A):
Primary NAICS: __ __ __
Secondary NAICS: __ __ __
6. Enter the Entity Category
Select the category below that describes the entity:
 Corporation
Corporation Type (check one)
 Corporation (i.e., C Corporation; most corporations)
 S Corporation
 Limited Liability Corporation (LLC)
 Limited Liability Partnership (LLP)
 Partnership
 Sole Proprietorship
 Other, specify: ________________________
Public or Private Status (check one)
 Publicly Traded (Stock ticker symbol: _______)
 Privately Held













Ownership Status (check one)
 Wholly Owned Subsidiary
 Joint Venture (partners: _____________________________)
 Other Subsidiary
Utility (Non-Investor Owned) (check one)
 Cooperative
 Municipal Utility
 Municipal Cooperative
 Other, specify: ________________________
Government (check one)
 Federal
 State
 Regional (e.g., multi-state)
 Local (e.g., city, county, or other sub-state level government)
 Native American Tribal Government
 Other, specify: ________________________
Government Corporation or Authority (check one)
 Federal
 State
 Regional (e.g., multi-state)
 Local (e.g., city, county, or other sub-state level government)
 Other, specify: ________________________
Non-Profit Organization
 Cooperative (e.g., non-profit electric cooperative)
 Trade Association (specify type):
 Reporting on behalf of its members, specified in attached list
 Reporting on its own achievements
All other Non-Profit Organizations (charities, fraternal orders, etc.
Specify: ____________________________________________________)
Individual or Household
Other, specify: _________________________________________

Form EIA-1605 – Schedule I, Section 1. Entity Statement

3

7. Describe the Entity Organization
Is your entity a holding company:
 Yes
 No
Identify your entity's Parent or Holding Company, if applicable: ________________________
8. Describe the Entity’s Organizational Boundaries
a. Method for Determining Organizational Boundaries
 Financial control
 Operational control. Explain how the use of this other approach results in organizational
boundaries that differ from results of the financial control approach:
__________________________________________________________________________
__________________________________________________________________________
__________________________________________________________________________
 Equity share. Explain how the use of this other approach results in organizational boundaries
that differ from results of the financial control approach:
__________________________________________________________________________
__________________________________________________________________________
__________________________________________________________________________
 Other. Describe method and explain how the use of this other approach results in
organizational boundaries that differ from results of the financial control approach:
__________________________________________________________________________
__________________________________________________________________________
__________________________________________________________________________
b. List All Large Wholly Owned Subsidiaries Included in this Report:
Subsidiary Name

Primary NAICS

c. List Any Large Partially Owned Subsidiary, Joint Venture, and Leased or Operated Emissions
Source Included in This Report:
1

Name or
Description
of Emissions
Source

2

3

Relationship
to Reporting
Entity

Partners

4

% Interest
Held By
Reporting
Entity

5

6

Method for
Determining
Inclusion in Report

% of
Emissions
Included
in This
Report

d. Additional Description of Organizational Boundaries (please describe, including criteria used for
excluding any emissions sources, if applicable):
_____________________________________________________________________________
_____________________________________________________________________________
_____________________________________________________________________________
9. Describe the Geographic Scope of Activities (please check one)
 This report covers U.S. activities only

Form EIA-1605 – Schedule I, Section 1. Entity Statement

4

 Nationwide (if operating in all 10 U.S. Census Regions)
 Multiple States (if not nationwide, enter states using 2-letter abbreviations from Appendix B:
__________________________________________)
 Single State (enter 2-letter abbreviation for state from Appendix B: _________________)
 This report covers U.S. and Non-U.S. activities
U.S. Activities:
 Nationwide (if operating in all 10 U.S. Census Regions)
 Multiple States (if not nationwide, enter states using 2-letter abbreviations from Appendix B:
_________)
 Single State (enter 2-letter abbreviation for state from Appendix B: _______________)
Foreign Activities: List all foreign countries in which reported activities occurred using the 3-digit
codes found in Appendix C, and the NAICS code that best corresponds to the primary activity in
that country from Appendix A:
Country
______
______
______
______

Primary NAICS code
______
______
______
______

10. Describe the Scope of the Emissions Inventory
Check the types of emission sources or sinks that are covered in the emissions inventory:
 Stationary source combustion
 Fugitive emissions from geologic reservoirs
 Mobile source combustion
 Indirect emissions from purchased energy
 Industrial processes
 Other indirect emissions
 Agricultural sources
 Terrestrial carbon fluxes and stocks
11. Describe the Entity Base Period
Indicate number of years in the Base Period:  1
2
3
4
Enter last year in Base Period: _____________
 Check here if you are reporting subentities that use a different base period from the entity
12. Describe Any Entity Program Affiliation(s)
Domestic Voluntary Initiatives
List the voluntary GHG-reduction initiative(s) with which the entity has an affiliation
(see list of codes in Appendix D):
_____ ______ ______ ______ ______
Other, specify: ______________________
Domestic Registries and Exchanges
List the U.S. GHG registry(ies) and/or exchange(s) with which the entity has an affiliation
(see list of codes in Appendix D):
_____ ______ ______ ______ ______
Other, specify: ______________________
International Registries and Exchanges
List the non-U.S. GHG registry(ies) and/or exchange(s) with which the entity has an affiliation
(see list of codes in Appendix D):
_____ ______ ______ ______ ______
Other, specify: ______________________

Form EIA-1605 – Schedule I, Section 1. Entity Statement

5

13. Request Confidentiality of Entity Information
Check box if applicable:
 Requesting confidential treatment for the information reported on this form.
(NOTE that if you request confidentiality, you must, in the space below, explain, on an element-byelement basis, the reasons why your reported information should be kept confidential. To assist in
this determination, respondents should demonstrate that their information contains trade secrets
or commercial or financial information whose release would be likely to cause substantial harm to
their company's competitive position.)
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
14. Enter Supplementary Information for Entity
Use this space (and attach additional sheets if necessary) to supply any supporting information you
feel helps explain your entity or report that is not accommodated directly in this reporting form.
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________

Form EIA-1605 – Schedule I, Section 1. Entity Statement

6

C1
C2
C3
D
E
F1
F2
F3
F4
F5
F6
F7

C

B1
B2
B3

B

Source

Item
A
A1
A2
A3
A4
A5
A6
A7

CO2
CH4
N2O
SF6

CO2
CH4
N2O
CO2

CO2
CH4
N2O

CO2
CH4
N2O
SF6

Gas

3

Units

4

6

7

8

9

Base Period Emissions or Carbon Flux
Base
Period
Average
Yr 1
Yr 2
Yr 3
Yr 4

5

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Direct Emissions
Carbon Dioxide
Methane
Nitrous Oxide
Sulfur Hexafluoride
HFC (Specify)
PFC (Specify)
CFC (Specify)
Indirect Emissions from Purchased Energy
(Inventory)
Carbon Dioxide
Methane
Nitrous Oxide
Indirect Emissions from Purchased Energy
(Reductions)
Carbon Dioxide
Methane
Nitrous Oxide
Carbon Flux
Other Indirect Emissions
Carbon Dioxide
Methane
Nitrous Oxide
Sulfur Hexafluoride
HFC (Specify)
PFC (Specify)
CFC (Specify)

2

1

1. Enter Aggregated Domestic Emissions by Gas (for independently verified reports only)

Part A. Aggregated Emissions by Gas (for independently verified reports only)

Reporting
Year
Emissions or
Carbon Flux

10

Weighted
Rating

11

 Check box if all methods used to estimate emissions and sequestration have a B rating or higher. If checked, do not complete “Weighted
Rating” column of Parts A, B, C, and D, and skip Part E completely.

SECTION 2. ENTITY EMISSIONS INVENTORY

7

CO2

Captured CO2 Transferred to Another Entity
for Sequestration in a Geologic Reservoir

H

Units

4

6

C1
C2
C3
D
E
F1
F2
F3
F4

C

B1
B2
B3

B

Source

Item
A
A1
A2
A3
A4
A5
A6
A7

CO2
CH4
N2O
SF6

CO2
CH4
N2O
CO2

CO2
CH4
N2O

CO2
CH4
N2O
SF6

Gas

3

Units

4

8

9

6

7

8

9

Base Period Emissions or Carbon Flux
Base
Period
Yr 1
Yr 2
Yr 3
Yr 4
Average

5

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Direct Emissions
Carbon Dioxide
Methane
Nitrous Oxide
Sulfur Hexafluoride
HFC (Specify)
PFC (Specify)
CFC (Specify)
Indirect Emissions from Purchased Energy
(Inventory)
Carbon Dioxide
Methane
Nitrous Oxide
Indirect Emissions from Purchased Energy
(Reductions)
Carbon Dioxide
Methane
Nitrous Oxide
Carbon Flux
Other Indirect Emissions
Carbon Dioxide
Methane
Nitrous Oxide
Sulfur Hexafluoride

2

1

7

Base Period Emissions or Carbon Flux
Base
Period
Yr 1
Yr 2
Yr 3
Yr 4
Average

5

2. Enter Aggregated Foreign Emissions by Gas (for independently verified reports only)

CO2

Gas

Captured CO2 Sequestered in an onsite
Geologic Reservoir

Source

Item

3

G

2

1

10

Reporting
Year
Emissions or
Carbon Flux

10

Reporting
Year
Emissions or
Carbon Flux

Weighted
Rating

11

Weighted
Rating

11

8

H

G

Item
F5
F6
F7

1

CO2

CO2

Gas

3

Units

4

6

7

8

9

Base Period Emissions or Carbon Flux
Base
Period
Yr 1
Yr 2
Yr 3
Yr 4
Average

5

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Captured CO2 Transferred to Another Entity
for Sequestration in a Geologic Reservoir

Source
HFC (Specify)
PFC (Specify)
CFC (Specify)
Captured CO2 Sequestered in an Onsite
Geologic Reservoir

2

10

Reporting
Year
Emissions or
Carbon Flux

Weighted
Rating

11

9

CO2e

Subtotal

Biomass Combustion

Waste Fuels Combustion

Non-Standard Fuel
Combustion

Nonfuel Use of Fossil Fuels

2

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CH4
N2O
CO2

Source
Fossil Fuel Combustion

1

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

Reporting
Year
Emissions

9

Estimation
Method

10

a. Stationary Combustion (incorporate all emissions, including CO2 captured from stationary combustion for geologic sequestration)

1. Enter Direct Emissions

Part B. Inventory of Domestic Emissions and Carbon Flux (optional for independently verified reports)

10

Rating

11

Subtotal

Mobile Refrigeration and Air
Conditioning

Aircraft

Marine Vessels

Off-Road Vehicles

Source
Highway Vehicles

1

CO2e

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
HFC-134a

2

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

Reporting
Year
Emissions

9

b. Mobile Sources (incorporate all emissions, including CO2 captured from mobile sources for geologic sequestration)

Estimation
Method

10

11

Rating

11

Soda Ash Production
and Use

Methane Emissions
from Production of
Other Petrochemicals
Nitric Acid Production

Methanol Production

Limestone and
Dolomite Use

Lime Production

Iron and Steel
Production

Hydrogen Production

Cement Production

Ammonia Production

CO2

N2O

CH4

CO2

CO2

CO2

CH4

CO2

CO2

CO2

CO2

CO2

N2O

Gas

Process/Fugitive
Emissions

Adipic Acid production
Aluminum Production
(CO2 only)

2

1

Yr 1

4

6

Industrial Processes

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

12

Rating

11

c. Sector-Specific Industrial Process Emissions (incorporate all emissions, including CO2 captured from industrial process emissions for geologic
sequestration)

Subtotal

Other (for HFCs and
PFCs, specify gas)

PFC
SF6
HFC-23

Aluminum Production
(for PFC, specify gas)
HCFC-22 Production
SF6 Emissions form
Electrical Equipment
Industrial Use and
Production of HFCs,
PFCs, and SF6 (for
HFCs and PFCs,
specify gas)
Magnesium Production
Semiconductor
Manufacture (for HFCs
and PFCs, specify gas)
CO2
CH4
N2O
SF6
PFCs
HFCs
CO2e

SF6
HFCs
PFCs
SF6

SF6

PFCs

HFCs

SF6

CH4
N2O
CH4

Domestic and Industrial
Wastewater Handling
Landfills

Oil and Natural Gas
Industries

CH4
CH4
CO2
N2O

Gas

Process/Fugitive
Emissions

Coal Mines

2

1

6

7

High GWP Gases

Waste Handling

Energy

Yr 3

Yr 4

Base Period Emissions

Yr 2

5

Other Industrial Process Sources

Yr 1

4

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

c. Sector-Specific Industrial Process Emissions (continued)
Reporting
Year
Emissions

9

Estimation
Method

10

13

Rating

11

st

Subtotal
CO2e

CO2

Cultivation of Organic Soils

Other agricultural sources
(specify source and gas):
________________

CO2

N2O

N2O

CH4

CH4

CH4

N2O

N2O

CH4

Lime Application

Rice Cultivation – 1
Harvest
nd
Rice Cultivation – 2
(“ratoon”) harvest
Agricultural Soils –
Nitrogen Application
Agricultural Soils – Organic
Soils

Residue Burning

Livestock Waste

CH4

Gas

Source

Enteric Fermentation

2

1

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

Reporting
Year
Emissions

9

10

Estimation
Method

d. Agricultural Sources (incorporate all emissions, including CO2 captured from agricultural sources for geologic sequestration)

14

Rating

11

Gas

Source
Fugitive Emissions From
the Extraction of Naturally
Occurring CO2
Fugitive Emissions From
the Extraction of CO2 From
Anthropogenic Sources
Fugitive Emissions During
Transport and Processing
Fugitive Emissions During
Injection and Extraction for
Enhanced Resource
Recovery
Post-Injection Seepage
From Permanent Geologic
Storage Reservoir

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year

9

Estimation
Method

10

Rating

11

CO2e
CO2e

3. Other (Mobile & Agricultural Sources)

Subtotals

metric tons

metric tons

metric tons

metric tons

Unit of Measure

3

4

5

6

Onsite

Offsite

Total

Base Period Average Quantity

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

CO2e
CO2e

2. Sector-Specific Industrial Process Emissions

Gas

Source

1. Stationary Combustion

2

1

8

9

Onsite

Offsite

15

Total

Reporting Year Quantity

7

f. Captured CO2 Emissions from Anthropogenic Sources (captured CO2 emissions should also be included as emissions in Questions 1a through
1d above).

CO2e

CO2e

CO2e

CO2e

CO2e

2

1

e. Fugitive Emissions Associated With Geologic Reservoirs

Units

Source
Yr 1

3

Total

Chilled Water

Hot Water

Steam

Source
Electricity (for emissions
inventory)

1

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2e

2

Yr 1

4

4

5

6

6

Yr 3

Yr 3

Yr 4

7

Yr 4

Base Period Emissions

Yr 2

5

Yr 2

Base Period Consumption

7

Base
Period
Average

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

b. Emissions from Purchased Energy for Emissions Inventory

Electricity
Steam
Hot Water
Chilled Water

2

1

a. Physical Quantities of Energy Purchased

2. Enter Indirect Emissions From Purchased Energy

Reporting
Year
Emissions

9

9

10

16

Rating

11

System
Type/Fuel Used
for Generation

Estimation
Method

Reporting Year
Consumption

8

1

Units

3

*Do not include in emission inventory.

Subtotal

Source
Employee Commuting
Manufacture & Sale of
Energy Efficient Products
Consumption of Energyintensive Products
Other:

1

3. Other Indirect Emissions*

CO2e

Gas

2

Yr 1

4

6

Yr 3

Yr 3

7

Yr 4

7

Yr 4

Base Period Emissions

Yr 2

5

6

Base Period Emissions

Yr 2

5

8

Base
Period
Average

8

Base
Period
Average

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Units

3

4

Yr 1

*Sum emissions reported for these sources in Question 2b above.

Total

Steam, Hot Water, and
Chilled Water*

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2e

2

Reporting
Year
Emissions

9

Reporting
Year
Emissions

9

Estimation
Method

10

Estimation
Method

10

17

Rating

11

Rating

11

Emissions from Purchased Energy for Emission Reductions (Not included in emissions inventory. Complete only if calculating reductions at
the entity-level using Addendum B1 or B2.)

Source
Electricity (for emissions
reductions)

c.

CO2
CO2
CO2
CO2

CO2

CO2
CO2

Units

3

Base
Period
Average

4

5

6

Carbon Stocks
Estimated
Carbon Stocks
Reporting
in Year Prior to Year Carbon
Reporting Year
Stocks

8

Estimation
3
Method

7

Reporting
Year Stock
Change or
Carbon
1,2
Flux

Rating

9

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Carbon flux can be positive or negative; positive values indicate a net increase in terrestrial carbon stocks; negative values indicate a net loss of carbon to the atmosphere, i.e.,
emissions. Carbon flux may be calculated directly using flux based approaches or as the change in carbon stocks between the reporting year and the previous year.
2
Reporters using methods that estimate carbon flux only should enter a carbon flux value in the column “Reporting Year Stock Change or Carbon Flux” and leave columns blank for
Carbon Stock data.
3
Methods include lookup tables, models, measurement, or a combination of these methods. If using a model, please indicate the name.
4
Forest management includes management decisions taken at any stage of forest rotation. Forest preservation is a special case and is reported separately in Question 4c below.
5
Activities such as thinning should be included under Forest Management.
6
“Other” includes activities not covered in the previous categories practiced by landowners that may result in changes in carbon fluxes or stocks.

1

Gas

Categories
Afforestation, Mine Land
Reclamation, and Forest
Restoration
Agroforestry
4
Forest Management
Short-rotation Biomass
Energy Plantations
Urban Forestry
5
Timber Harvesting
6
Other
Total
CO2

2

1

a. Forestry Activities

4. Enter Terrestrial Carbon Fluxes and Stocks

18

Gas

Category

6

Reporting
Year Stock
Change

5

Estimated
Carbon Stocks
in Harvested
Wood Products
in Reporting
Year

4

Estimated Carbon
Stocks in Harvested
Wood Products in Year
Prior to Reporting Year

Units

3

5

100 year Residual
Carbon Stock

4

Stock of Carbon in Harvested
Wood

Estimation
Method

6

Estimation
Method

7

Rating

7

Rating

8

Name/Description
of Tract of Land
1.
2.
3.
4.
Total

1

Year
Protected

Type of Restriction (e.g.,
Easement, Deed Restrictions,
etc.)

Area
(Acres)

4

Units

5

7

Estimation
Method

6

50% of Carbon
Stock
Accumulated in
50 Years from
Inception of
Preservation
Activity

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

3

2

Rating

8

Land Restoration and Forest Preservation
 Entity certifies that it has restored native habitat on land and placed administrative restrictions on the land to ensure that human-caused
releases of carbon from the lands do not occur in the future.

CO2

2

Wood products

c.

Units

3

Method 2: Estimate and report residual carbon after 100 years in reporting year.

1

ii

CO2

Gas

Category

Wood Products

2

1

b. Wood Products:
i
Method 1: Track and report emissions in year they occur.

19

Area
(Acres)

Name/Description
Tract of Land
1.
2.
3.
4.
Total

Estimation
Method

10

Rating

11

Area (Acres)

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

2

Type of Land

1

Name/Description of Tract of Land

3

Identify System Used to
Determine Sustainability

Loss

9

Area
(Acres)

Reporting
Year Carbon
Stocks

8

Name/Description of Tract of Land

Carbon
Stocks in
Year Before
Disturbance

Incidental Lands Excluded From Terrestrial Carbon Fluxes and Stocks in Question 4a

1.
2.
3.
4.
Total

f.

1.
2.
3.
4.
Total

7

Carbon Stocks

4

Base Period
Average

6

3

Units

5

Has Sustainability
Been Verified by Third
Party Certifier (Y/N)

Year

4

2

Type of
Disturbance

3

1

e. Sustainably Managed Forests

2

1

d. Forest Land That Experiences Carbon Losses From Natural Disturbances
This table documents carbon stock changes on each tract of disturbed lands and should be used until carbon stocks reach pre-disturbance
levels.

20

Gas
CO2
CO2
CO2
CO2
CO2

Categories
Crops on Mineral Soils
Pasture/Grazing
Land Use Change
Other:______________
Total

Units

3

Base
Period
Average

4

5

Estimated Carbon
Stocks in Year
Prior to Reporting
Year

Carbon Stocks
Estimated
Carbon Stock
in Reporting
Year

6

7

Reporting
Year Stock
Change or
Carbon
1,2
Flux
Estimation Method

8

3

Rating

9

Gas
CO2
CO2
CO2
CO2
CO2
CO2
CO2
CO2

2

Units

3

Rating

21

5

4

Reporting Year Stock Change or Carbon
Flux

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Categories
Forestry Activities
Wood Products Method 1
Wood Products Method 2
Land Restoration and Forest Preservation
Sustainably Managed Forests
Incidental Lands
Other Terrestrial Carbon Fluxes
Total Reporting Year Terrestrial Carbon Flux

1

h. Terrestrial Carbon Flux Summary

Carbon flux can be positive or negative; positive values indicate a net increase in terrestrial carbon stocks; negative values indicate a net loss of carbon to the atmosphere, i.e.,
emissions. Carbon flux may be calculated directly using flux based approaches or as the change in carbon stocks between the reporting year and the previous year.
2
Reporters using methods that estimate carbon flux only should enter a carbon flux value in the column “Reporting Year Stock Change or Carbon Flux” and leave columns blank for
Carbon Stock data.
3
Methods include lookup tables, models, measurement, or a combination of these methods. If using a model, please indicate the name.

1

2

1

g. Other Terrestrial Carbon Fluxes

metric tons

CO2e

6

Reporting Year
De Minimis
Emissions*

5

Base Period
Average
De Minimis
Emissions

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

*De minimis emissions must be re-estimated after any significant increase in such emissions, or every five years, whichever occurs first.

Total

Unit of Measure

Gas

De Minimis
Emissions
Source

De Minimis
Emissions Type

4

3

2

1

5. Identify and Estimate De Minimis Emissions Sources

Year Last
Estimated*

7

22

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

Complete and attach one copy of Addendum A, Inventory of Foreign or Subentity Emissions.

Part C. Inventory of Foreign Emissions and Carbon Flux (optional for independently verified reports)

23

Yr 1

mtCO2e

Captured CO2 Transferred to Another Entity for
Sequestration in a Geologic Reservoir**

I

5

6

Yr 2

Yr 3

Yr 4

Base Period Emissions

4

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

mtCO2e = metric tons carbon dioxide equivalent
*Do not include Indirect Emissions from Purchased Energy for Calculation of Emission Reductions (Item C) in Total Emissions.
**Do not include CO2 extracted and captured from natural sources or CO2 recycled during enhanced resource recovery operations.

mtCO2e

Other Indirect Emissions

mtCO2e

H

Total Inventory Emissions (D – E – F)

mtCO2e

Captured CO2 Sequestered in an Onsite
Geologic Reservoir**

F

G

mtCO2e

mtCO2e

mtCO2e

mtCO2e

mtCO2e

Gas/
Units

Carbon Flux

Total Emissions (A + B)*

Indirect Emissions from Purchased Energy for
Emissions Inventory
Indirect Emissions from Purchased Energy for
Calculation of Emission Reductions

Direct Emissions

Source

3

2

E

D

C

B

A

Item

1

1. Enter Total Domestic Emissions and Carbon Flux

Part D. Total Emissions and Carbon Flux

Base
Period
Average

7

Reporting Year
Emissions or
Carbon Flux

8

24

Source
Yr 1

mtCO2e

Captured CO2 Transferred to Another Entity for
Sequestration in a Geologic Reservoir**

I

5

6

Yr 2

Yr 3

Yr 4

Base Period Emissions

4

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

mtCO2e = metric tons carbon dioxide equivalent
*Do not include Indirect Emissions from Purchased Energy for Calculation of Emission Reductions (Item C) in Total Emissions.
**Do not include CO2 extracted and captured from natural sources or CO2 recycled during enhanced resource recovery operations.

mtCO2e

Other Indirect Emissions

mtCO2e

H

Total Inventory Emissions (D – E – F)

mtCO2e

Captured CO2 Sequestered in an Onsite
Geologic Reservoir**

F

G

mtCO2e

mtCO2e

mtCO2e

mtCO2e

mtCO2e

Gas/
Units

Carbon Flux

Total Emissions (A + B)*

Indirect Emissions from Purchased Energy for
Emissions Inventory
Indirect Emissions from Purchased Energy for
Calculation of Emission Reductions

Direct Emissions

3

2

E

D

C

B

A

Item

1

2. Enter Total Foreign Emissions and Carbon Flux
Base
Period
Average

7

Reporting Year
Emissions or
Carbon Flux

8

25

4

3

2

1

A

B

C

D

2

1

C

D

Totals
Weighted
Average
4
Rating

3

B

3

4

A

Totals
Weighted
Average
4
Rating

Direct
Emissions

3

4

5

Foreign Sources

Indirect Emissions
from Purchased
Energy
Carbon Flux
Domestic Sources
1

Total Emissions

6

Weighted Total
2
Emissions

7

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

26

Sum Columns 3, 4 and 5 and enter result in Column 6 to get Total Emissions by Rating Category. Note: Enter carbon flux as a positive value, regardless of whether it was positive or
negative carbon flux
2
Calculate Weighted Emissions by Rating Category by multiplying Column 2 by Column 6.
3
Sum values for Total Emissions (Column 6) and Weighted Total Emissions (Column 7) and enter in the Totals row.
4
Calculate Inventory Weighted Average Rating by dividing Weighted Total Emissions (Column 7) in the Totals row by Total Emissions (Column 6) in the Totals row.

1

Weighting
Factor

Rating
Category

3

2

1

1. Enter Base Period Data (enter domestic and foreign sources separately)

If this is a Start Year Report, complete Question 1 only. If this is a Reporting Year Report, complete Question 2 for reporting year data; complete
Question 1 only if you have submitted revised base period emissions data.

Do not complete Part E if all the methods used to estimate reductions were rated B or higher.

Part E. Emissions Inventory Rating Summary

4

3

2

1

A

B

C

D

2

1

C

D

Totals
Weighted
Average
4
Rating

3

B

3

4

A

Totals
Weighted
Average
4
Rating

Direct
Emissions

3

4

5

Foreign Sources

Indirect Emissions
from Purchased
Energy
Carbon Flux
Domestic Sources
Total Emissions
1
and Carbon Flux

6

7

Weighted Total
Emissions and
2
Carbon Flux

Form EIA-1605 – Schedule I, Section 2. Entity Emissions Inventory

27

Sum Columns 3, 4 and 5 and enter result in Column 6 to get Total Emissions by Rating Category. Note: Enter carbon flux as a positive value, regardless of whether it was positive or
negative carbon flux.
2
Calculate Weighted Emissions and Carbon Flux by Rating Category by multiplying Column 2 by Column 6.
3
Sum values for Total Emissions (Column 6) and Weighted Total Emissions and Carbon Flux (Column 7) and enter in the Totals row.
4
Calculate Inventory Weighted Average Rating by dividing Weighted Total Emissions (Column 7) in the Totals row by Total Emissions (Column 6) in the Totals row.

1

Weighting
Factor

Rating
Category

3

2

1

2. Enter Reporting Year Data (enter domestic and foreign sources separately)

SECTION 3. EMISSION OFFSETS
This Report Includes Offsets Obtained by Agreement With (check all that apply):
 Other reporters to the Voluntary Reporting of Greenhouse Gases Program (complete Part A)
 Non-reporters (complete Part B)
Part A. Offsets Obtained by Agreement with Other Reporters. (Offsets may only be registered, or
reported but not registered, in this part if the reporter has an agreement with the other reporting entity to
register or report the reduction.) Identify the entities from which you have obtained offsets and enter the
quantity or quantities of emission reductions obtained in metric tons CO2e.
1. Enter Information in the Table Below for Offsets Obtained From Other Reporters
1

2

Name of Other
Reporter

Name of Other
Reporter’s
Subentity
(If Applicable)

3

Domestic
or Foreign

4

Gas

5

Unit of
Measure

6

7

Quantity

Registered
by Other
Reporter?
(Y/N)

*If you are registering reductions, the offsets obtained from another reporter must have been registered by that other reporter.

Form EIA-1605 – Schedule I, Section 3. Emissions Offsets

28

Part B. Offset Obtained by Agreement With a Non-Reporter. Complete and attach one copy of
Addendum A for each offset obtained by agreement with a non-reporter included in this report. Also
attach Schedules I, II (if applicable), and III completed by, or on behalf of, the non-reporter.
1. Enter Information in the Table Below for Offsets Obtained From Non-reporters
1

Name of
Non-reporter

2

Name of
Non-reporter’s
Subentity
(If Applicable)

3

Domestic
or
Foreign

4

Gas

5

Unit of
Measure

6

Quantity

7

Non-Reporter
Has Met
Requirements
for
Registration?*
(Y/N)

*If you are registering reductions, the non-reporters providing offsets must meet all the requirements for registering reductions.

Form EIA-1605 – Schedule I, Section 3. Emissions Offsets

29

SECTION 4. ENTITY-LEVEL EMISSION REDUCTIONS
If this is a Reporting Year report and you are estimating reductions for the entire entity or for just one
portion of your entity, complete and attach one copy of the appropriate addendum (Addendum B1-B16)
for the method used to estimate the reduction. If you are estimating reductions for two or more
subentities, proceed to Schedule II.

Form EIA-1605 – Schedule I, Section 4. Entity-level Emission Reductions

30

SCHEDULE II. SUBENTITY INFORMATION
SECTION 1. SUBENTITY STATEMENT
1. Enter the Subentity Identification:
Subentity Name:
___________________________________________________
Description:
___________________________________________________
Relationship to Entity (describe): ____________________________________________
2. Enter the Reason for Delineation of Subentity (please check all that apply and explain below):
 Distinct Estimation Method; indicate method employed (check only one)
 Changes in Emissions Intensity
 Changes in Absolute Emissions
 Changes in Carbon Storage
 Changes in Avoided Emissions
 Action-Specific Emission Reductions
 Emission Reductions from Energy Generation and Distribution
 Distinct Output Metric (for intensity calculation), indicate Metric used: _________________
 Foreign Country Operations, specify country(ies): ____________________________
 Distinct Base Period from Other Subentities (for new or acquired operations)
 Emission Reduction Calculation Method Changed
 Small Emitter Registering Emission Reductions Associated with More Than One Specific Activity
 Reporting But Not Registering Emission Reductions Associated with More Than One Specific
Activity
 Not Practicable to Assess Change in Net Emissions for the Following Reasons:
_____________________________________________________________________________
_____________________________________________________________________________
3. Enter Any Significant Changes to Previous Subentity Statement (if applicable):
 The subentity has not undergone significant change since the last Voluntary Reporting of
Greenhouse Gases report.
 The subentity was not included in the previous report
 The subentity's primary activity is new
 The subentity's primary activity existed prior to this report
 The subentity was not included in any other entity's previous reports
 The subentity was included in another entity's previous reports, please explain:
_______________________________________________________________
 The subentity was included in the previous report, but has undergone significant changes, as
follows:
 Data are being resubmitted for previous baseline years
 New baseline year(s) have been selected.
Briefly describe the significant changes since the most recent Voluntary Reporting of
Greenhouse Gases Program report filed:
_______________________________________________________________________
_______________________________________________________________________
4. Describe the Subentity’s Primary Economic Activities (NAICS Code):
Enter the primary (and secondary, if applicable) 3-digit North American Industrial Classification
System (NAICS) code for the subentity (A list of NAICS codes is provided in Appendix A):
Primary NAICS: __ __ __
Secondary NAICS: __ __ __

Form EIA-1605 – Schedule II, Section 1. Subentity Statement

31

5. Describe the Organizational Boundaries of Subentity:
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________

6. Describe the Scope of the Emissions Inventory
Check the types of emission sources or sinks that are covered in the emissions inventory:
 Stationary Source Combustion  Fugitive Emissions from Geologic Reservoirs
 Mobile Source Combustion
 Indirect Emissions from Purchased Energy
 Industrial Processes
 Other Indirect Emissions
 Agricultural Sources
 Terrestrial Carbon Fluxes and Stocks
7. Describe the Geographic Scope of Activities (check the applicable box)
 This report covers U.S. activities only
 Nationwide (if operating in all 10 U.S. Census Regions)
 Multiple States (if not nationwide, select state codes from Appendix B:
______________________________)
 Single State (select state code from Appendix B:___________________)
 This subentity covers only non-U.S. activities
(Required, if applicable) List the foreign country in which reported activities occurred, using the 3digit codes found in Appendix C: ___________

8. Indicate the Inclusion of Emission Reductions
Are emission reductions included in this year's subentity report?
 Yes
 No, please explain: _____________________________________________________________
_____________________________________________________________________________
9. Define the Subentity Base Period
Indicate number of years in the Base Period:  1  2
Enter last year in Base Period: ____________

 3

 4

10. Enter Any Supplementary Information for the Subentity
Use this space (and attach additional sheets if necessary) to supply any supporting informationyou
feel helps explain your entity or report that isn’t accommodated directly in this reporting form.
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________

Form EIA-1605 – Schedule II, Section 1. Subentity Statement

32

SECTION 2. SUBENTITY EMISSIONS INVENTORY
Complete and attach Addendum A, Inventory of Foreign or Subentity Emissions.

Form EIA-1605 – Schedule II, Section 2. Subentity Emissions Inventory

33

SECTION 3. SUMMARY OF EMISSION REDUCTIONS FROM SUBENTITIES
Complete and attach the appropriate form from Addendum B1-B16 for each subentity.

Form EIA-1605 – Schedule II, Section 3. Summary of Emission Reductions from Subentities

34

SCHEDULE III. EMISSION REDUCTIONS
SECTION 1. REGISTERED EMISSION REDUCTIONS
Part A. Enter Domestic Net Entity-Level Registered Reductions and Carbon Storage (metric tons
CO2e)
1

2

3

4

Emission Reductions

Item
A

Method/Source
Direct

A2

Indirect from Purchased Energy
Direct

B2

Indirect from Purchased Energy
Changes in Carbon Storage

D

Changes in Avoided Emissions

E

Energy Generation and Distribution

F

Coal Mine Methane Gas Recovery

G

Landfill Methane Recovery

H

Geologic Sequestration

I

Transmission and Distribution Improvements

J

Capture of Methane from Anaerobic Digestion at
Wastewater Treatment Facilities

K
L

Supply of Methane from Anaerobic Digestion of
Animal Waste to a Natural Gas Distribution
Network
Recycling of Fly Ash

M

Demand-Side Management or Other Emission
Reduction Programs

N

Combined Heat and Power

O

Other Action-specific Methods

O1

Direct

O2

Indirect from Purchased Energy
Subtotal (Sum rows A1 through O)

P
Q

Offsets

Q1

Offsets Obtained from Other Reporters

Q2

Offsets Obtained from Non-reporters

R
S

T

(Subtract
column 3 from
column 2)

Changes in Absolute Emissions

B1
C

Net
Registered
Reductions

Changes in Emissions Intensity

A1
B

Gross
Registered
Reductions

Registered
Reductions
Distributed
to Other
Reporters

Subtotal (Sum rows P through Q2)
Reduction Deficits Carried Over from Last Year’s
Report (From Schedule III, Section 1, Part A, Item
T in Last Year’s Report. If negative, enter value. If
zero or positive, enter zero.)
TOTAL (Add row R to row S)

Form EIA-1605 – Schedule III. Emission Reductions

35

Part B. Enter Foreign Net Entity-level Registered Reductions and Carbon Storage (metric tons
CO2e)
1

2

3

4

Emission Reductions

Item
A

Method/Source
Direct

A2

Indirect from Purchased Energy
Direct

B2

Indirect from Purchased Energy
Changes in Carbon Storage

D

Changes in Avoided Emissions

E

Energy Generation and Distribution

F

Coal Mine Methane Gas Recovery

G

Landfill Methane Recovery

H

Geologic Sequestration

I

Transmission and Distribution Improvements

J

Capture of Methane from Anaerobic Digestion at
Wastewater Treatment Facilities

K
L

Supply of Methane from Anaerobic Digestion of
Animal Waste to a Natural Gas Distribution
Network
Recycling of Fly Ash

M

Demand-Side Management or Other Emission
Reduction Programs

N

Combined Heat and Power

O

Other Action-specific Methods

O1

Direct

O2

Indirect from Purchased Energy
Subtotal (Sum rows A1 through O)

P
Q

Offsets

Q1

Offsets Obtained from Other Reporters

Q2

Offsets Obtained from Non-reporters

R
S

T

(Subtract
column 3 from
column 2)

Changes in Absolute Emissions

B1
C

Net
Registered
Reductions

Changes in Emissions Intensity

A1
B

Gross
Registered
Reductions

Registered
Reductions
Distributed
to Other
Reporters

Subtotal (Sum rows P through Q2)
Reduction Deficits Carried Over from Last Year’s
Report (From Schedule III, Section 1, Part B, Item
T in Last Year’s Report. If negative, enter value. If
zero or positive, enter zero.)
TOTAL (Add row R to row S)

Form EIA-1605 – Schedule III. Emission Reductions

36

SECTION 2. REPORTED BUT NOT REGISTERED EMISSION REDUCTIONS
Part A. Enter Domestic Net Entity-level Reported but not Registered Reductions and Carbon
Storage
1

2

3

4

Emission Reductions
Net
Reported
Reported
Reductions
Reductions
Gross
Distributed
(Subtract
Reported
to Other
column 3 from
Item
Method/Source
Reporters
Reductions
column 2)
Carbon Dioxide, Methane, Nitrous Oxide, Hydrofluorocarbons, Perfluorocarbons, and Sulfur
Hexafluoride (metric tons CO2e)
A

Changes in Emissions Intensity

A1

Direct

A2

Indirect from Purchased Energy

A3

Other Indirect

B

Changes in Absolute Emissions

B1

Direct

B2

Indirect from Purchased Energy

B3

Other Indirect

C

Changes in Carbon Storage

D

Changes in Avoided Emissions

E

Energy Generation and Distribution

F

Coal Mine Methane Gas Recovery

G

Landfill Methane Recovery

H

Geologic Sequestration

I

Transmission and Distribution Improvements

J

Capture of Methane from Anaerobic Digestion at
Wastewater Treatment Facilities

K

Supply of Methane from Anaerobic Digestion of
Animal Waste to a Natural Gas Distribution
Network

L

Recycling of Fly Ash

M

Demand-Side Management or Other Emission
Reduction Programs

N

Combined Heat and Power

O

Other Action-specific Methods

O1

Direct

O2

Indirect from Purchased Energy

O3

Other Indirect

P

Subtotal (Sum rows A1 through O)

Form EIA-1605 – Schedule III. Emission Reductions

37

1

2

3

4

Emission Reductions
Net
Reported
Reported
Reductions
Reductions
Distributed
Gross
(Subtract
to Other
Reported
column 3 from
Item
Method/Source
Reductions
Reporters
column 2)
Carbon Dioxide, Methane, Nitrous Oxide, Hydrofluorocarbons, Perfluorocarbons, and Sulfur
Hexafluoride (metric tons CO2e)
Q

Offsets

Q1

Offsets Obtained from Other Reporters

Q2

Offsets Obtained from Non-reporters

R

S

T
U

Subtotal (Sum rows P through Q2)
Reduction Deficits Carried Over from Last Year’s
Report (From Schedule III, Section 2, Part A, Item
T in Last Year’s Report. If negative, enter value. If
zero or positive, enter zero.)
TOTAL (Add row R to row S)
Emission Reductions Also Registered as Emission
Intensity Reductions

Chlorofluorocarbons (CFCs) (Kilograms of native gas) Attach additional copies of Part A if reporting
reductions in domestic emissions of more than one CFC.
V

Destruction of CFCs. Specify CFC: ___________

W

Reduction Deficit for this CFC Carried Over from
Last Year’s Report (From Schedule III, Section 2,
Part A, Item X in Last Year’s Report. If negative,
enter value. If zero or positive, enter zero.)

X

TOTAL (Add row V to row W)

Form EIA-1605 – Schedule III. Emission Reductions

38

Part B. Enter Foreign Net Entity-level Reported but not Registered Reductions and Carbon
Storage
1

2

3

4

Emission Reductions
Net
Reported
Reported
Reductions
Reductions
Gross
Distributed
(Subtract
Reported
to Other
column 3 from
Item
Method/Source
Reductions
Reporters
column 2)
Carbon Dioxide, Methane, Nitrous Oxide, Hydrofluorocarbons, Perfluorocarbons, and Sulfur
Hexafluoride (metric tons CO2e)
A

Changes in Emissions Intensity

A1

Direct

A2

Indirect from Purchased Energy

A3

Other Indirect

B

Changes in Absolute Emissions

B1

Direct

B2

Indirect from Purchased Energy

B3

Other Indirect

C

Changes in Carbon Storage

D

Changes in Avoided Emissions

E

Energy Generation and Distribution

F

Coal Mine Methane Gas Recovery

G

Landfill Methane Recovery

H

Geologic Sequestration

I

Transmission and Distribution Improvements

J

Capture of Methane from Anaerobic Digestion at
Wastewater Treatment Facilities

K

Supplu of Methane from Anaerobic Digestion of
Animal Waste to a Natural Gas Distribution
Network

L

Recycling of Fly Ash

M

Demand-Side Management or Other Emission
Reduction Programs

N

Combined Heat and Power

O

Other Action-specific Methods

O1

Direct

O2

Indirect from Purchased Energy

O3

Other Indirect
Subtotal (Sum rows A1 through O)

P
Q

Offsets

Form EIA-1605 – Schedule III. Emission Reductions

39

1

2

3

4

Emission Reductions
Net
Reported
Reported
Reductions
Reductions
Distributed
Gross
(Subtract
to Other
Reported
column 3 from
Item
Method/Source
Reductions
Reporters
column 2)
Carbon Dioxide, Methane, Nitrous Oxide, Hydrofluorocarbons, Perfluorocarbons, and Sulfur
Hexafluoride (metric tons CO2e)
Q1

Offsets Obtained from Other Reporters

Q2

Offsets Obtained from Non-reporters

R
S
T
U

Subtotal (Sum rows P through Q2)
Reduction Deficits Carried Over from Last Year’s
Report (From Schedule III, Section 2, Part B, Item
T in Last Year’s Report. If negative, enter value. If
zero or positive, enter zero.)
TOTAL (Add row R to row S)
Emission Reductions Also Registered as Emission
Intensity Reductions

Chlorofluorocarbons (CFCs) (Kilograms of native gas) Attach additional copies of Part B if reporting
reductions in foreign emissions of more than one CFC.
V

Destruction of CFCs. Specify CFC: ___________

W

Reduction Deficit for this CFC Carried Over from
Last Year’s Report (From Schedule III, Section 2,
Part B, Item X in Last Year’s Report. If negative,
enter value. If zero or positive, enter zero.)

X

TOTAL (Add row V to row W)

Form EIA-1605 – Schedule III. Emission Reductions

40

SCHEDULE IV. VERIFICATION AND CERTIFICATION
SECTION 1. INDEPENDENT VERIFICATION (To be completed by Independent Verifier)
If your report has been independently verified by a qualified verifier in accord with Section 300.11 of 10
CFR Part 300, Guidelines for Voluntary Greenhouse Gas Reporting, that verifier must complete Schedule
IV, Section 1. Otherwise, please skip to Section 2 of Schedule IV, Reporter Self Certification.
1. Enter the Name of Entity Report Independently Verified
Name of Entity: ___________________________________________
2. Describe the Identity of the Independent Verifier
Name of Verifying Company or Individual: _________________________________________
Street: ____________________________________________
P.O. Box: ________
City: _____________________________________ State: _________ Zip: ________
Contact Name:______________________________
Contact Title: _______________________________
Telephone: (_______) _____ - ____________ Fax: (____) _____ - ___________
E-Mail Address: ___________________________
3. Define the Independent Verifier’s Qualifications
a. Corporate Accreditation(s) (check all that apply):
 California Climate Action Registry
 American National Standards Institute and Registrar Accreditation Board (ANSI_RAB)
 CDM Executive Board
 United Kingdom Accreditation Scheme
 International Standards Organization (ISO)
 Other, please specify: _______________________________________
b. Independent Verifier Personnel Accreditation(s):

Name

Title

Relevant
Degree

Accreditation

Lead Verifier

c.

Meets Requirements of
§300.11(b) of 10 CFR
Part 300
 Yes

 No

 Yes

 No

 Yes

 No

Independent Verification Approach (check all that apply)
The independent verification of data on this form included the following activities:
 Strategic Review and Assessment
 Assurance that all sources have been included
 Review of greenhouse gas data management systems
 Review of greenhouse gas inventory training procedures
 Review of data collection quality assurance/quality control procedures
 Confirmation of required records maintenance
 Desk Audit
 Review for accuracy, completeness, and consistency with DOE guidelines of entity
statements
 Assessment of any significant changes in entity boundaries
 Review for arithmetic accuracy, internal consistency and plausibility
 Independent review of activity data for a sample of sources
 Independent review of activity data for all sources

Form EIA-1605 – Schedule IV. Verification and Certification

41

 Field Audit
 Independent measurements at a sample of sources
 Independent measurement for all sources
4. Include the Certification of Independent Verification
We are an independent verifier of _________[entity]_________’s emissions report. We do not hold
any financial interest in the outcome of this audit. We are not owned in whole or in part by
_________[entity]_________ nor do we provide any ongoing operational, support, or consulting
services to _________[ entity]_________ except services consistent with independent financial
accounting or independent certification of compliance with government or private standards.
This is to certify that ________[entity]_________has had its greenhouse gas emissions report
covering the period
to __________ verified according to the Voluntary Reporting of
Greenhouse Gases Guidelines found in 10 CFR Part 300.11(d). We have found that the report
meets the requirements of 10 CFR 300.11(e), including the following:
•

The information reported on this form is accurate and complete;

•

The information reported on this form has been compiled in accordance with the Voluntary
Reporting of Greenhouse Gases Guidelines found in 10 CFR Part 300;

•

The information reported on this form is consistent with information submitted in prior years, if
any, or any inconsistencies with prior year’s information are documented and explained in
Schedule I, Entity Statement;

•

The reporting entity has taken due diligence to ensure that emissions, emission reductions, or
sequestration reported in this EIA-1605(b) report are not double counted in this report, or
reported by any other entity;

•

For any emissions, emission reductions, or sequestration included in this report that were
achieved by a third-party entity, there exists a written agreement with each third party
indicating that it has agreed that the reporting entity should be recognized as the entity
entitled to report these emissions, emission reductions, or sequestration;

•

None of the emissions, emission reductions, or sequestration reported was produced by
shifting emissions to other entities or to non-reporting parts of the entity;

•

None of any reported changes in avoided emissions associated with the sale of electricity,
steam, hot or chilled water generated from non-emitting or low-emitting sources are
attributable to the acquisition of a generating facility that has been previously operated,
unless the base year generation values are derived from records of the facility’s operation
prior to its acquisition; and

•

The reporting entity will maintain sufficient records to document the analysis and calculations
underpinning this verification for a period of no less than three years.

Form EIA-1605 – Schedule IV. Verification and Certification

42

Lead Certifier of Verifying Firm
(Print Name)

Lead Certifier of Verifying Firm
(Signature)

Date

Corporate Officer of Verifying Firm
(Print Name)

Corporate Officer of Verifying Firm
(Signature)

Date

NOTE: 18 U.S.C. §1001 makes it a criminal offense for any person knowingly and willfully to
make to any Agency or Department of the United States any false, fictitious, or fraudulent
statements as to any matter within its jurisdiction.

Form EIA-1605 – Schedule IV. Verification and Certification

43

SECTION 2. REPORTER SELF-CERTIFICATION
1. Certification
I certify to the best of my knowledge and belief that:
 This form meets the following three requirements for reporting reductions.
•

The information reported on this form is accurate and complete;

•

The information reported on this form has been compiled in accordance with the Voluntary
Reporting of Greenhouse Gases Guidelines found in 10 CFR Part 300; and

•

The information reported on this form is consistent with information submitted in prior years, if
any, or any inconsistencies with prior year’s information are documented and explained in
Schedule I, Entity Statement.

 This form meets the above three requirements for reporting reductions and the five additional
requirements for registering reductions listed below.
•

Reasonable steps have been taken to ensure that direct emissions, emission reductions,
and/or sequestration reported are neither double counted nor reported by any other entity;

•

Any emission reductions reported or registered by the entity that were achieved by another
entity (other than a very small emitter that participated in a demand-side management
program) are included in this report only if: the other entity does not intend to report or
register theses reductions directly; there exists a written agreement with each other entity
providing that the reporting entity is the entity entitled to report or register these emission
reductions; and the information reported on the other entity would meet the requirements of
this part if the entity were reporting directly to DOE/EIA.

•

None of the emissions, emission reductions, or sequestration were produced by shifting
emissions to other entities or to non-reporting parts of the entity;

•

None of any reported changes in avoided emissions associated with the sale of electricity,
steam, hot or chilled water generated from non-emitting or low-emitting sources are
attributable to the acquisition of a generating facility that has been previously operated,
unless the entity’s base period includes generation values from the acquiring facility’s
operation prior to its acquisition; and

•

The entity maintains records documenting the analysis and calculations underpinning the
data reported on this form and records documenting the analysis and calculations
underpinning the base values used in calculating annual reductions are maintained in
accordance with 10 CFR 300.9(d).

Certifying Official’s Name: _________________________________________________________
Title: __________________________________________________________________________
Mailing Address:
Street or P.O. Box__________________________________________________________
City: ______________________________________ State: _____ Zip Code: __________
Telephone: ( ____ ) _____ - ____________
E-Mail: ___________________________________________
Signature:

_______________________________________

Date:

_______________________________________

NOTE: 18 U.S.C. §1001 makes it a criminal offense for any person knowingly and willfully to
make to any Agency or Department of the United States any false, fictitious, or fraudulent
statements as to any matter within its jurisdiction.
Form EIA-1605 – Schedule IV. Verification and Certification

44

Nitrous Oxide

Sulfur Hexafluoride

HFC (Specify)

PFC (Specify)

A3

A4

A5

A6

C1
C2
C3
D
E

C

B1
B2
B3

B

CO2
CH4
N2O
CO2

CO2
CH4
N2O

SF6

N2O

CH4

CO2

Gas

3

Units

4

6

7

8

9

Base Period Emissions or Carbon Flux
Base
Period
Average
Yr 1
Yr 2
Yr 3
Yr 4

5

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

CFC (Specify)
Indirect Emissions from Purchased Energy
(Inventory)
Carbon Dioxide
Methane
Nitrous Oxide
Indirect Emissions from Purchased Energy
(Reductions)
Carbon Dioxide
Methane
Nitrous Oxide
Carbon Flux
Other Indirect Emissions

Methane

A2

A7

Carbon Dioxide

A1

Direct Emissions

Source

Item

A

2

1

1. Enter Aggregated Emissions by Gas (for independently verified reports only)

Part A. Aggregated Emissions by Gas (for independently verified reports only)

Reporting
Year
Emissions or
Carbon Flux

10

A1

Weighted
Rating*

11

Complete part A if an independent third party has verified this report and you wish to report aggregated emissions by gas rather than source
category. Otherwise, complete part B.

 A domestic or foreign subentity. Enter Name of Subentity: ___________________________________________________

 Entity-wide foreign operations

This emissions inventory is for:

Addendum A. Inventory of Foreign or Subentity Emissions

Captured CO2 Transferred to Another Entity
for Sequestration in a Geologic Reservoir

Source
Carbon Dioxide
Methane
Nitrous Oxide
Sulfur Hexafluoride
HFC (Specify)
PFC (Specify)
CFC (Specify)
Captured CO2 Sequestered in an onsite
Geologic Reservoir

2

CO2

CO2

Gas
CO2
CH4
N2O
SF6

3

Units

4

6

7

8

9

Base Period Emissions or Carbon Flux
Base
Period
Yr 1
Yr 2
Yr 3
Yr 4
Average

5

10

Reporting
Year
Emissions or
Carbon Flux

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A2

Weighted
Rating*

11

*Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

H

G

Item
F1
F2
F3
F4
F5
F6
F7

1

CO2e

Subtotal

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

being done for a subentity, domestic or foreign.

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A3

Rating*

11

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is

Biomass Combustion

Waste Fuels Combustion

Non-Standard Fuel
Combustion

Nonfuel Use of Fossil Fuels

2

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CH4
N2O
CO2

Source
Fossil Fuel Combustion

1

a. Stationary Combustion (incorporate all emissions, including CO2 captured from stationary combustion for geologic sequestration)

1. Enter Direct Emissions

Part B. Inventory of Domestic Emissions and Carbon Flux (optional for independently verified reports)

CO2e

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
HFC-134a

2

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A4

Rating*

11

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign

Subtotal

Mobile Refrigeration and Air
Conditioning

Aircraft

Marine Vessels

Off-Road Vehicles

Source
Highway Vehicles

1

b. Mobile Sources (incorporate all emissions, including CO2 captured from mobile sources for geologic sequestration)

CO2

N2O

CH4

CO2

CO2

CO2

CH4

CO2

CO2

CO2

Units

3

Yr 1

4

6

Industrial Processes

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

11

A5

Rating*

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

Soda Ash Production
and Use

Methane Emissions
from the Production of
Other Petrochemicals
Nitric Acid Production

Methanol Production

Limestone and
Dolomite Use

Lime Production

Iron and Steel
Production

Hydrogen Production

Cement Production

CO2

CO2

N2O

Gas

Process/Fugitive
Emissions

Adipic Acid production
Aluminum Production
(CO2 only)
Ammonia Production

2

1

c. Sector-Specific Industrial Process Emissions (incorporate all emissions, including CO2 captured from industrial processes emissions for
geologic sequestration)

CO2
CH4
N2O
SF6
PFCs
HFCs
CO2e

SF6
PFCs
HFCs
SF6

SF6

PFCs

HFCs

Units

3

6

7

High GWP Gases

Waste Handling

Energy

Yr 3

Yr 4

Base Period Emissions

Yr 2

5

Other Industrial Process Sources

Yr 1

4

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A6

Rating*

11

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

Subtotal

Other (for HFCs and
PFCs, specify gas)

PFCs
SF6
HFC-23

Aluminum Production
(specify gas)
HCFC-22 Production
SF6 Emissions form
Electrical Equipment
Industrial Use and
Production of HFCs,
PFCs, and SF6 (for
HFCs and PFCs,
specify gas)
Magnesium Production
Semiconductor
Manufacture (for HFCs
and PFCs, specify gas)
SF6

CH4
N2O
CH4

Domestic and Industrial
Wastewater Handling
Landfills

Oil and Natural Gas
Industries

CH4
CH4
CO2
N2O

Gas

Process/Fugitive
Emissions

Coal Mines

2

1

c. Sector-Specific Industrial Process Emissions (continued)

st

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A7

Rating*

11

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

Subtotal
CO2e

CO2

Cultivation of Organic Soils

Other agricultural sources
(specify source and gas):
________________

CO2

N2O

N2O

CH4

CH4

CH4

N2O

N2O

CH4

Lime Application

Rice Cultivation – 1
Harvest
nd
Rice Cultivation – 2
(“ratoon”) harvest
Agricultural Soils –
Nitrogen Application
Agricultural Soils – Organic
Soils

Residue Burning

Livestock Waste

CH4

Gas

Source

Enteric Fermentation

2

1

d. Agricultural Sources (incorporate all emissions, including CO2 captured from agricultural sources for geologic sequestration)

Gas

Source
Fugitive Emissions From
the Extraction of Naturally
Occurring CO2
Fugitive Emissions From
the Extraction of CO2 From
Anthropogenic Sources
Fugitive Emissions During
Transport and Processing
Fugitive Emissions During
Injection and Extraction for
Enhanced Resource
Recovery
Post-Injection Seepage
From Permanent Geologic
Storage Reservoir

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year

9

Estimation
Method

10

Rating*

11

CO2e
CO2e

3. Other (Mobile and Agricultural Sources)

Subtotals

metric tons

metric tons

metric tons

metric tons

Unit of Measure

3

4

5

6

Onsite

Offsite

Total

Base Period Average Quantity

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

CO2e

2. Sector-Specific Industrial Process Emissions

Gas
CO2e

Source

1. Stationary Combustion

2

1

8

9

Onsite

Offsite

A8

Total

Reporting Year Quantity

7

f. Captured CO2 Emissions from Anthropogenic Sources (captured CO2 emissions should also be included as emissions in Questions 1a through
1d above).

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

CO2e

CO2e

CO2e

CO2e

CO2e

2

1

e. Fugitive Emissions Associated With Geologic Reservoirs

Units

Source
Yr 1

3

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2
CH4
N2O
CO2e

2

Units

3

Yr 1

4

4

5

6

6

Yr 3

Yr 3

Yr 4

7

Yr 4

Base Period Emissions

Yr 2

5

Yr 2

Base Period Consumption

Base
Period
Average

8

Base
Period
Average

7

Reporting
Year
Emissions

9

9

10

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A9

Rating*

11

System
Type/Fuel Used
for Generation

Estimation
Method

Reporting Year
Consumption

8

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

Total

Chilled Water

Hot Water

Steam

Source
Electricity (for emissions
inventory)

1

b. Emissions from Purchased Energy for Emissions Inventory

Electricity
Steam
Hot Water
Chilled Water

2

1

a. Physical Quantities of Energy Purchased

2. Enter Indirect Emissions From Purchased Energy*

1

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Rating*

11

CO2e

Subtotal

Units

3

Yr 1

4

6

Yr 3

7

Yr 4

Base Period Emissions

Yr 2

5

Base
Period
Average

8

Reporting
Year
Emissions

9

Estimation
Method

10

Rating**

11

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A10

*Do not include in emission inventory.
** Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

Gas

2

Source
Employee Commuting
Manufacture & Sale of
Energy Efficient Products
Consumption of Energyintensive Products
Other:

1

3. Other Indirect Emissions*

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.
**Sum emissions reported for these sources in Question 2b above.

Total

Steam, Hot Water, and
Chilled Water**

Gas
CO2
CH4
N2O
CO2
CH4
N2O
CO2e

2

Emissions from Purchased Energy for Calculating Emissions Reductions in Addendum B (Not included in emissions inventory. Complete only
if calculating reductions for this subentity using Addendum B1 or B2.)

Source
Electricity (for emissions
reductions)

c.

CO2
CO2
CO2
CO2

CO2

CO2
CO2

Units

3

Base
Period
Average

4

5

6

Carbon Stocks
Estimated
Carbon Stocks
Reporting
in Year Prior to Year Carbon
Reporting Year
Stocks

8

Estimation
3
Method

7

Reporting
Year Stock
Change or
Carbon
1,2
Flux

Rating*

9

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A11

Carbon flux can be positive or negative; positive values indicate a net increase in terrestrial carbon stocks; negative values indicate a net loss of carbon to the atmosphere, i.e.,
emissions. Carbon flux may be calculated directly using flux based approaches or as the change in carbon stocks between the reporting year and the previous year.
2
Reporters using methods that estimate carbon flux only should enter a carbon flux value in the column “Reporting Year Stock Change or Carbon Flux” and leave columns blank for
Carbon Stock data.
3
Methods include lookup tables, models, measurement, or a combination of these methods. If using a model, please indicate the name.
4
Forest management includes management decisions taken at any stage of forest rotation. Forest preservation is a special case and is reported separately in Question 4c below.
5
Activities such as thinning should be included under Forest Management.
6
“Other” includes activities not covered in the previous categories practiced by landowners that may result in changes in carbon fluxes or stocks.
* Complete column 9, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 9 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

1

Gas

Categories
Afforestation, Mine Land
Reclamation, and Forest
Restoration
Agroforestry
4
Forest Management
Short-rotation Biomass
Energy Plantations
Urban Forestry
5
Timber Harvesting
6
Other
Total
CO2

2

1

a. Forestry Activities

4. Enter Terrestrial Carbon Fluxes and Stocks

Units

3

6

Reporting Year
Stock Change

5

Estimated Carbon
Stocks in
Harvested Wood
Products in
Reporting Year

4

Estimated Carbon Stocks
in Harvested Wood
Products in Year Prior to
Reporting Year
Estimation
Method

7

Rating*

8

Units

3

5

100 year Residual
Carbon Stock

4

Stock of Carbon in Harvested
Wood

Estimation
Method

6

Rating*

7

1

Year
Protected

Type of Restriction (e.g.,
Easement, Deed Restrictions,
etc.)

Area
(Acres)

4

Units

5

7

Estimation
Method

6

50% of Carbon
Stock
Accumulated in
50 Years from
Inception of
Preservation
Activity

Rating*

8

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A12

* Complete column 8, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 8 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

3

2

Land Restoration and Forest Preservation
 Entity certifies that it has restored native habitat on land and placed administrative restrictions on the land to ensure that human-caused
releases of carbon from the lands do not occur in the future.

Name/Description
of Tract of Land
1.
2.
3.
4.
Total

c.

* Complete column 7, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 7 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

CO2

Gas

Category

Wood products

2

Method 2: Estimate and report residual carbon after 100 years in reporting year.

1

ii

* Complete column 8, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 8 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

CO2

Gas

Category

Wood Products

2

1

b. Wood Products:
i
Method 1: Track and report emissions in year they occur.

Area
(Acres)

Name/Description
Tract of Land
1.
2.
3.
4.
Total

Type of
Disturbance

3

Year

4

Units

5

Base Period
Average

6

7

Carbon
Stocks in
Year Before
Disturbance

Carbon Stocks
Reporting
Year Carbon
Stocks

8

Loss

9

Estimation
Method

10

Rating*

11

f.

1.
2.
3.
4.
Total

Area (Acres)

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

2

Type of Land

1

Name/Description of Tract of Land

3

Identify System Used to
Determine Sustainability

Area
(Acres)

Name/Description of Tract of Land

Incidental Lands Excluded From Terrestrial Carbon Fluxes and Stocks in Question 4a

1.
2.
3.
4.
Total

4

3

Has Sustainability
Been Verified by Third
Party Certifier (Y/N)

2

1

e. Sustainably Managed Forests

A13

* Complete column 11, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 11 if this copy of Addendum A is
being done for a subentity, domestic or foreign.

2

1

d. Forest Land That Experiences Carbon Losses From Natural Disturbances
This table documents carbon stock changes on each tract of disturbed lands and should be used until carbon stocks reach pre-disturbance
levels.

Gas
CO2
CO2
CO2
CO2
CO2

Categories
Crops on Mineral Soils
Pasture/Grazing
Land Use Change
Other:______________
Total

Units

3

Base
Period
Average

4

5

Estimated Carbon
Stocks in Year
Prior to Reporting
Year

Carbon Stocks
Estimated
Carbon Stock
in Reporting
Year

6

7

Reporting
Year Stock
Change or
Carbon
1,2
Flux
Estimation Method

8

3

Rating*

9

Gas
CO2
CO2
CO2
CO2
CO2
CO2
CO2
CO2

Categories

Units

3

5

Rating*

4

Reporting Year Stock Change or Carbon
Flux

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

A14

* Complete column 5, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 5 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

Forestry Activities
Wood Products Method 1
Wood Products Method 2
Land Restoration and Forest Preservation
Sustainably Managed Forests
Incidental Lands
Other Terrestrial Carbon Fluxes
Total Reporting Year Terrestrial Carbon Flux

2

1

h. Terrestrial Carbon Flux Summary

Carbon flux can be positive or negative; positive values indicate a net increase in terrestrial carbon stocks; negative values indicate a net loss of carbon to the atmosphere, i.e.,
emissions. Carbon flux may be calculated directly using flux based approaches or as the change in carbon stocks between the reporting year and the previous year.
2
Reporters using methods that estimate carbon flux only should enter a carbon flux value in the column “Reporting Year Stock Change or Carbon Flux” and leave columns blank for
Carbon Stock data.
3
Methods include lookup tables, models, measurement, or a combination of these methods. If using a model, please indicate the name.
* Complete column 9, weighted rating, if this copy of Addendum A is being completed for entity-wide foreign operations. Do not complete column 9 if this copy of Addendum A is being
done for a subentity, domestic or foreign.

1

2

1

g. Other Terrestrial Carbon Fluxes

metric tons

CO2e

6

Reporting Year
De Minimis
Emissions*

5

Base Period
Average
De Minimis
Emissions

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

*De minimis emissions must be re-estimated after any significant increase in such emissions, or every five years, whichever occurs first.

TOTAL

Unit of Measure

Gas

De Minimis
Emissions
Source

De Minimis
Emissions Type

4

3

2

1

5. Identify and Estimate De Minimis Emissions Sources

Year Last
Estimated*

7

A15

mtCO2e

Captured CO2 Transferred to Another Entity for
Sequestration in a Geologic Reservoir**

I

5

6

Yr 3

Form EIA-1605 – Addendum A. Subentity Emissions Inventory

Yr 4

Base Period Emissions
Yr 2

4

mtCO2e = metric tons carbon dioxide equivalent
*Do not include Indirect Emissions from Purchased Energy for Calculation of Emission Reductions (Item C) in Total Emissions.
**Do not include CO2 extracted and captured from natural sources or CO2 recycled during enhanced resource recovery operations.

mtCO2e

Other Indirect Emissions

mtCO2e

H

Total Inventory Emissions (D – E – F)

mtCO2e

Captured CO2 Sequestered in an Onsite Geologic
Reservoir**

F

G

mtCO2e

mtCO2e

mtCO2e

mtCO2e

mtCO2e

Yr 1

Gas/
Units

Carbon Flux

Total Emissions (A + B)*

Indirect Emissions from Purchased Energy for
Emissions Inventory
Indirect Emissions from Purchased Energy for
Calculation of Emission Reductions

Direct Emissions

Source

3

2

E

D

C

B

A

Item

1

1. Enter Total Emissions and Carbon Flux

Part C. Total Foreign or Subentity Emissions and Carbon Flux

Base Period
Average

7

8

A16

Reporting Year
Emissions or
Carbon Flux

Addendum B1. Changes in Emissions Intensity
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Output
1. Enter Physical, Economic, or Indexed Output Measures for the Base Period and Reporting Year

Item

1

2

Output
Measure

Unit of
Measure

3

4

5

6

7

8

Yr 4

Avg.

Reporting
Year

Base Period
Yr 1

Yr 2
Yr 3
Physical Measure

A

Economic Measure
B

Current $

C

Constant
Year
($2000)

D

[Physical or
Economic]

Indexed Measure

2. If Providing an Output Measure Not Described in the Technical Guidelines (see Table 2.2), Indicate
Reason Why Alternative Measure Was Selected (check all that apply):
 Industry/trade group standard
 Reported to state/federal government agencies
 Used in annual reports
 Other
3. Define and Describe the Output Measure Used and Provide a Rationale for Why the Measure Was
Selected:

Form EIA-1605 − Addendum B1. Changes in Emissions Intensity

B1

Part B. Emissions, Emissions Intensity, and Emission Reductions
1. Enter Base Period and Reporting Year Emissions (metric tons CO2e)
1

Item
E
F

Description
Base Period Emissions
Reporting Year Emissions

2

3

4

Direct
Emissions*

Indirect
Emissions
from
Purchased
Energy*

Other
Indirect
Emissions

*Include CO2 captured and sequestered in geologic reservoirs.
**Calculate indirect emissions from purchased electricity using electricity end use factors for emission reductions from Appendix F.

2. Calculate and Enter Base Period and Reporting Year Intensity (metric tons CO2e per unit of output)
1

Item
G
H

Description

2

3

4

Direct
Emissions

Indirect
Emissions
from
Purchased
Energy

Other
Indirect
Emissions

3

4

Base Period Intensity (E / (A7, C7, or D7))
Reporting Year Intensity (F / (A8, C8, or D8))

3. Calculate and Enter Emission Reductions (metric tons CO2e)
1

Item
I

Description

2

Source of Reductions
Indirect
Emissions
from
Other
Direct
Purchased
Indirect
Energy
Emissions*
Emissions

Emission Reductions ((G – H) * A8, C8, or D8)

*Reductions of Other Indirect Emissions may not be registered.

4. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

5. Describe Actions That Were the Likely Causes of the Reductions Achieved:

Form EIA-1605 − Addendum B1. Changes in Emissions Intensity

B2

6. Identify Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
7. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

5

Name of Recipient

Emissions Type*

Gas

Units
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons

Amount

CO2e
CO2e
CO2e
CO2e
Total Direct Emission Reductions
Total Indirect Emission Reductions
from Purchased Energy
Total Other Indirect Emission
Reductions

CO2e
CO2e
CO2e

*Direct, Indirect from Purchased Energy, Other Indirect.

Form EIA-1605 − Addendum B1. Changes in Emissions Intensity

B3

Addendum B2. Changes in Absolute Emissions
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Requirement for Using Method to Register Reductions: Reporting Year output must be equal to or
greater than the Base Period output.
Part A. Output
1. Enter Physical, Economic, or Indexed Output Measures for Base Period and Reporting Year

Item

1

2

Output
Measure

Unit of
Measure

3

4

5

6

7

8

Yr 4

Avg.

Reporting
Year

Base Period
Yr 1
Yr 2
Yr 3
Physical Measure

A

Economic Measure
B

Current $

C

Constant
Year ($2000)

D

[Physical or
Economic]

Indexed Measure

2. Is the Reporting Year Output Equal To or Greater Than the Base Period Average Output?
 Yes
 No (If No, you may only report reductions on this addendum. Go to Question 4.)
3. Do You Intend to Register Absolute Emission Reductions for the Entity or Subentity?
 Yes (Skip Question 4 and go to question 5)
 No (Go to Question 4)
4. In Addition to Reporting Reductions on Addendum B2, Do You Also Intend To Register Reductions
on Addendum B1 for this Entity or Subentity (Changes in Emissions Intensity)?
 Yes
 No
5. If Providing an Output Measure Not Described in the Technical Guidelines (see Table 2.2), Indicate
the Reason Why Alternative Measure Was Selected (check all that apply):
 Industry/trade group standard
 Reported to state/federal government agencies
 Used in annual reports
 Other
6. Define and Describe the Output Measure Used and Provide a Rationale for Why the Measure Was
Selected:

Form EIA-1605 − Addendum B2. Changes in Absolute Emissions

B4

Part B. Emissions and Emission Reductions
1. Enter Emissions and Calculate Emission Reductions (metric tons CO2e)
1

Item
E
F
G
H

Description
Base Period
Reporting Year
Registered Emission Reductions (E – F)
Reported Emission Reductions (E – F)

2

3

4

Source of Emissions
Indirect
Emissions
from
Other
Purchased
Direct
Indirect
Emissions*
Energy**
Emissions

*Include CO2 captured and sequestered in geologic reservoirs (onsite and offsite).
**Calculate indirect emissions from purchased electricity using electricity end use factors for emission reductions from Appendix F.

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(Optional):

Form EIA-1605 − Addendum B2. Changes in Absolute Emissions

B5

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

5

Name of Recipient

Emissions Type*

Gas

Units
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons

Amount

CO2e
CO2e
CO2e
CO2e
Total Direct Emission Reductions
Total Indirect Emission Reductions from
Purchased Energy
Total Other Indirect Emission
Reductions

CO2e
CO2e
CO2e

*Direct, Indirect from Purchased Energy, Other Indirect.

Form EIA-1605 − Addendum B2. Changes in Absolute Emissions

B6

Addendum B3. Changes in Carbon Storage
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Terrestrial Carbon Flux
1. Enter Reporting Year Inventory of Terrestrial Carbon Flux
1

Item

Categories

A

Forestry Activities

B

Wood Products – Method 1

C

Wood Products – Method 2

D

Land Restoration and Forest Preservation

E

Sustainably Managed Forests

F

Incidental Lands

G

Other Terrestrial Carbon Fluxes

H

Total Reporting Year Terrestrial Carbon Flux

2

Units of
Measure
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

3

Reporting Year
Stock Change or
Carbon Flux*

*From Schedule I, Section 2, Part B, Question 4, if reporting for entity only. From Addendum A, Part B, Question 4, if reporting for a
subentity.

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement

Form EIA-1605 − Addendum B3. Changes in Carbon Storage

B7

5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part B. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B3. Changes in Carbon Storage

B8

Addendum B4. Changes in Avoided Emissions
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Complete one copy of Addendum B4 for each energy product sold.
Part A. Generated Energy Source and Characteristics
1. Did the Entity or Subentity Emit Greenhouse Gases in the Base Period (including any capacity
acquired since the Base Period)?
 Yes (If Yes, you must estimate reductions using Addendum B5, Emission Reductions from
Energy Generation and Distribution)
 No
2. Has the Entity or Subentity Acquired or Divested Generation Capacity Since the Base Period?
 Yes (Go to Question 3)
 No (Go to Question 4)
3. Was the Acquired or Divested Capacity Operational During the Base Period for the Entity or
Subentity?
 Yes (If Yes, you must adjust Base Period generation to reflect any capacity that was acquired or
divested)
 No
4. Identify Energy Product Type Sold (check one)
 Electricity
 Steam
 Hot water
 Chilled water
Part B. Energy Generation, Emissions, and Emission Reductions
1. Enter Activity Data, Emission Coefficients, Conversion Factors, and Emission Reductions
1

Item
A
B
C
D
E
F
G
H

Description
Base Period Energy Sold
Reporting Year Total Emissions
Reporting Year Energy Generated
Reporting Year Emissions Intensity (B/C)
Reporting Year Energy Sold
Reporting Year Incremental Energy Sold (E-A)
Avoided Emissions Intensity Benchmark
Emission Reduction ((G - D) * F)

2

3

Units of Measure

Quantity

metric tons CO2e

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

Form EIA-1605 − Addendum B4. Changes in Avoided Emissions

B9

3. Describe Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B4. Changes in Avoided Emissions

B10

Addendum B5. Emission Reductions from Energy Generation and Distribution
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Complete one copy of Addendum B5 for each energy product sold.
Part A. Energy Generation and Emissions
1. Energy Product Type Exported (check one)
 Electricity
 Steam
 Hot water
 Chilled water
2. Emissions, Energy Generation, and Emissions Intensity
Item

1

2

3

Description

Units of Measure

Quantity

A

Base Period Emissions

metric tons CO2e

B

Base Period Exported Energy

C

Base Period Emissions Intensity (A/B)

D

Reporting Year Emissions

E

Reporting Year Exported Energy

F

Reporting Year Emissions Intensity (D/E)

G

Reporting Year Incremental Exported Energy (E - B)

H

Avoided Emissions Benchmark

MWh or MMBtu

Metric tons CO2e
MWh or MMBtu

MWh or MMBtu

Part B. Emission Reductions
1. Calculate and Enter Emission Reductions
1

Item
I
J
K

Description
Emission Reductions from Improvements in Historical
Emissions Intensity [(C - F) * B]
Emission Reductions from Incremental Exported Energy
[(H - F) * G]
Total Emission Reductions from Energy Generation and
Exports (I + J)

2

3

Units of Measure

Quantity

metric tons CO2e
metric tons CO2e
metric tons CO2e

2. Identify Types of Actions That Were the Likely Cause(s) of the Reductions Achieved [Enter codes
from Appendix M]

Form EIA-1605 − Addendum B5. Emission Reductions from Energy Generation and Distribution

B11

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B5. Emission Reductions from Energy Generation and Distribution

B12

Addendum B6. Reductions from Coal Mine Methane Recovery
If Reporting Subentities, Enter Name of Subentity:_______________________________________
Part A. Action Identification
1. Enter Location of Coal Mine(s):
1

2

Name
City

2. Enter Date Methane Recovery Began:

3

Location
State
(if domestic
subentity)

Month_________

4

Country
(if foreign
subentity)

Year_____________

3. Describe Action: __________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
Part B. Action Quantification
1. Enter Action Characteristics
1

Coal Mine Name

2

3

4

Seam Affected

Month Cut
Through

Year Cut
Through

Form EIA-1605 − Addendum B6. Reductions from Coal Mine Methane Recovery

B13

2. Enter Volume of Gas Captured by Source and Disposition (Mscf)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition

Year 1

Year 2

Year 3

DEGASIFICATION DURING MINING
Ventilation Systems
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Total Ventilation Systems
Other Degasification Methods
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Total Other Degasification
PRE-MINING DEGASIFICATION
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Total Pre-Mining Degasification
Total All Methods

3. Enter Average Heat Content of Gas Captured (Btu/scf)
1

2

3

4

Base Period

Source and Disposition

Year 1

Year 2

Year 3

DEGASIFICATION DURING MINING
Ventilation Systems
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Other Degasification Methods
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
PRE-MINING DEGASIFICATION
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite

Form EIA-1605 − Addendum B6. Reductions from Coal Mine Methane Recovery

B14

4. Enter Total Energy Content of Gas Captured and Combusted (MMBtu)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition

Year 1

Year 2

Year 3

DEGASIFICATION DURING MINING
Ventilation Systems
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Other Degasification Methods
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
PRE-MINING DEGASIFICATION
Flared
Electricity used onsite
Electricity sold to grid
Injected into pipeline
Direct use onsite
Total

5. Enter Mass of Methane Captured (metric tons CO2e)
1

2

3

4

Base Period

Source and Disposition
Total Methane Captured

Year 1

Year 2

Year 3

Part C. Emission Reductions
1. Calculate Changes in Methane Capture
1

Item
A
B
C

Description
Average Annual Quantity of Methane Captured in Base
Period
Methane Captured in Reporting Year
Change in Methane Captured (B – A)

2

3

Units of Measure

Quantity

metric tons CO2e
metric tons CO2e
metric tons CO2e

2. Calculate Changes in Disposition of Electricity Generation from Captured Methane (MWh)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Item

D
E
F

Disposition
Electricity Used Onsite
Electricity Sales
Total Generation

Year 1

Year 2

Year 3

Form EIA-1605 − Addendum B6. Reductions from Coal Mine Methane Recovery

B15

3. Calculate Carbon Dioxide Displaced from Electricity Used Onsite (avoided emissions)
1

Item
G
H
I
J
K

Description
Base Period Average Electricity Used Onsite
Reporting Year Electricity Used Onsite
Reporting Year Incremental Electricity Used Onsite (H –
G)
Reporting Year Total Emissions from Electricity Used
Onsite*
Reporting Year Emissions Intensity of Electricity Used
Onsite (J/H)

L

Avoided Emissions Benchmark

M

Emission Reductions ((L - K) * I)

2

3

Units of Measure
MWh
MWh

Quantity

MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

*Include emissions from supplemental fossil fuel use only.

4. Calculate Carbon Dioxide Displaced from Electricity Sales (avoided emissions)
1

Item
N
O
P
Q
R

Description
Base Period Average Electricity Sold
Reporting Year Electricity Sold
Reporting Year Incremental Electricity Sold (O – N)
Reporting Year Total Emissions from Electricity Sold
Reporting Year Emissions Intensity of Electricity Sold
(Q/O)

S

Avoided Emissions Benchmark

T

Emission Reductions ((S – R) * P)

2

3

Units of Measure
MWh
MWh
MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

Quantity

5. Calculate Carbon Dioxide Emissions from Flaring
1

Item
U
V
W
X

Description
Base Period Average Methane Flared
Reporting Year Methane Flared
Incremental Methane Flared (V – U)
Change in Carbon Dioxide Emissions from Flaring

2

3

Units of Measure
MMBTU
MMBTU
MMBTU
metric tons CO2e

Quantity

6. Summarize Emission Reductions
1

Item
Y
Z
AA
BB
CC

Description
Change in Methane Captured and
Combusted
Carbon Dioxide Displaced from
Electricity Used Onsite
Carbon Dioxide Displaced from
Electricity Sales
Carbon Dioxide Emissions from
Flaring
Net Change in Greenhouse Gas
Emissions (Y + Z + AA – BB)

2

Units of
Measure
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

3

4

5

Emission Reductions
Direct
Avoided
TOTAL

Form EIA-1605 − Addendum B6. Reductions from Coal Mine Methane Recovery

B16

7. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

8. Describe Actions That Were the Likely Causes of the Reductions Achieved:

9. Identify Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
10. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B6. Reductions from Coal Mine Methane Recovery

B17

Addendum B7. Landfill Methane Recovery
If Reporting Subentities, Enter Name of Subentity:

____ ____________________________________

Part A. Action Identification
1. Enter Location of Landfill(s):
1

2

Name

3

City

2. Enter Date Methane Recovery Began:

4

Location
State
(if domestic
subentity)

Month_________

Country
(if foreign
subentity)

Year_____________

3. Describe Action: __________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
Part B. Action Quantification
1. Enter Action Characteristics
1

Name of Landfill
Affected

2

Year Opened

3

4

5

Year
Closed

Year Gas
Recovery
Installed

Waste in Place (MMT)

Form EIA-1605 − Addendum B7. Landfill Methane Recovery

B18

2. Enter Volume of Landfill Gas Captured by Disposition (Mscf)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Flared
Electricity used onsite
Electricity sold offsite
Injected into pipeline
Direct use onsite
Direct use offsite
Total

Year 1

Year 3

Year 2

3. Enter Average Heat Content of Gas Captured (Btu/scf)
1

2

3

4

Base Period

Source and Disposition
Flared
Electricity used onsite
Electricity sold offsite
Injected into pipeline
Direct use onsite
Direct use offsite

Year 1

Year 2

Year 3

4. Enter Total Energy Content of Gas Captured and Combusted (MMBtu)
1

2

3

4

5

6

7

Year 3

Year 4

Base
Period
Average

Reporting
Year

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Flared
Electricity used onsite
Electricity sold offsite
Injected into pipeline
Direct use onsite
Direct use offsite
Total

Year 1

Year 2

5. Enter Mass of Methane Captured (metric tons CO2e)
1

2

3

Base Period

Source and Disposition
Flared
Electricity used onsite
Electricity sold offsite
Injected into pipeline
Direct use onsite
Direct use offsite
Total

Year 1

Year 2

Year 3

Form EIA-1605 − Addendum B7. Landfill Methane Recovery

B19

Part C. Emission Reductions
1. Calculate Changes in Methane Capture
1

Item
A
B
C

Description
Average Annual Quantity of Methane Captured in Base
Period
Methane Captured in Reporting Year
Change in Methane Captured (B – A)

2

3

Units of Measure
metric tons CO2e

Quantity

metric tons CO2e
metric tons CO2e

2. Calculate Changes in Disposition of Electricity Generation from Captured Methane (MWh)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period
Item
D
E
F

Source and Disposition
Electricity Used Onsite
Electricity Sales
Total Generation

Year 1

Year 2

Year 3

3. Calculate Carbon Dioxide Displaced from Electricity Used Onsite (avoided emissions)
1

Item
G
H
I
J
K

Description
Base Period Average Electricity Used Onsite
Reporting Year Electricity Used Onsite
Reporting Year Incremental Electricity Used Onsite (H –
G)
Reporting Year Total Emissions from Electricity Used
Onsite *
Reporting Year Emissions Intensity of Electricity Used
Onsite (J/H)

L

Avoided Emissions Benchmark

M

Emission Reductions ((L - K) * I)

2

3

Units of Measure
MWh
MWh

Quantity

MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

*Include emissions from supplemental fossil fuel use only.

4. Calculate Carbon Dioxide Displaced from Electricity Sales (avoided emissions)
1

Item
N
O
P
Q
R

Description
Base Period Average Electricity Sold
Reporting Year Electricity Sold
Reporting Year Incremental Electricity Sold (O – N)
Reporting Year Total Emissions from Electricity Sold*
Reporting Year Emissions Intensity of Electricity Sold
(Q/O)

S

Avoided Emissions Benchmark

T

Emission Reductions ((S - R) * P)

2

3

Units of Measure
MWh
MWh
MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

Quantity

*Include emissions from supplemental fossil fuel use only

Form EIA-1605 − Addendum B7. Landfill Methane Recovery

B20

5. Calculate Carbon Dioxide Displaced by Methane Supplied to a Natural Gas Distribution Network
Item
U
V
W

1

2

3

Description
Base Period Average Methane Supplied to a Natural Gas
Distribution Network
Reporting Year Methane Supplied to a Natural Gas
Distribution Network
Incremental Methane Supplied to a Natural Gas
Distribution Network (V-U)

Units of Measure

Quantity

MMBTU
MMBTU
MMBTU
metric tons
CO2e/MMBtu

X

Methane Emissions Factor

Y

Change in Carbon Dioxide Emissions from Methane
Supplied to a Natural Gas Distribution Network (W * X)

metric tons CO2e

6. Summarize Emission Reductions
1

Item
Z
AA
BB
CC
DD

2

Description
Change in Methane Captured and
Combusted
Carbon Dioxide Displaced from
Electricity Used Onsite
Carbon Dioxide Displaced from
Electricity Sales
Carbon Dioxide Displaced by
Methane Supplied to a Natural
Gas Distribution Network
Net Change in Greenhouse Gas
Emissions (Z + AA + BB + CC)

Units of
Measure
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

3

Direct

4

5

Emission Reductions
Indirect
Avoided

6

TOTAL

metric tons
CO2e

7. Identify Types of Actions that Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

8. Describe the Actions that Were the Likely Causes of the Reductions Achieved:

9. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement

Form EIA-1605 − Addendum B7. Landfill Methane Recovery

B21

10. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B7. Landfill Methane Recovery

B22

Addendum B8. Geologic Sequestration
If Reporting Subentities, Enter Name of Subentity: __________________________________________
Part A. Action Identification
1. Enter Name and Location of CO2 Injection Project:
1

2

3

4

5

6

If Onsite,
Agreement?

Wells
Sealed
or Plan
to Seal
Wells?

Location

Name

City

State
or Country

2. Enter the Date CO2 Injection Began: Month_________

Storage
Onsite?
(Y/N)

Year_____________

3. Describe the Action: _________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
5. Is the Reporting Entity Responsible for the Injection of CO2 Into a Permanent Storage Reservoir?
 Yes
 No
6. If the Answer to Question 5 is No, Does the Reporter Have a Written Agreement With the
Sequestering Party Allowing the Reporter to Claim the Reductions?
 Yes
 No
 Not-applicable, explain: ______________________________________
__________________________________________________________
__________________________________________________________
__________________________________________________________
__________________________________________________________

Form EIA-1605 − Addendum B8. Geologic Sequestration

B23

Part B. Action Quantification
1. Enter Source of Carbon Dioxide Sequestered in Current Reporting Year (metric tons CO2e)

Item
A
B
C
D
E
F

1

2

Name of Source

Location of Source

3
CO2
Extracted/
Captured

4
CO2 Acquired
Via Transfer
or Purchase

5
Total CO2
Captured or
Acquired

6
Name of
Storage Site

Totals (sum of items A-E)

2. Enter Amount Sequestered in Current Reporting Year (metric tons CO2e)
1

Ite
m

2

Name of
Storage
Site

3

4

5

6

Post-Injection Leakage/Seepage
During Current Reporting Year

Location
of
Storage
Site

Enhanced
CO2 Injected in
Resource
Current
Monitoring
Recovery?
Reporting Year
Method
CO2 Sequestered by Reporting Entity
Yes/No
Yes/No
Yes/No
CO2 Sequestered by Third Party
Yes/No
Yes/No
Yes/No
Totals (sum of items G-L)

G
H
I
J
K
L
M

7

Quantity

Total CO2
Sequestered in
Current Reporting
Year

6

7

3. Enter Amount Sequestered in Base Year (metric tons CO2e)
1

Item
N
O
P
Q
R
S
T

2

Name of
Storage
Site

Location
of Storage
Site

3

4

5

Post-Injection Leakage/Seepage
During Base Year

Enhanced
Resource
Amount Injected
Monitoring
Recovery?
in Base Year
Method
CO2 Sequestered by Reporting Entity
Yes/No
Yes/No
Yes/No
CO2 Sequestered by Third Party
Yes/No
Yes/No
Yes/No

Quantity

Total CO2
Sequestered in
Base Year

Totals (sum of items N-S)

Part C. Emission Reductions
1. Calculate Emission Reductions
1
Item

U

Description
Emission Reductions (M7-T7)

2

3

Unit of Measure
metric tons CO2e

Quantity

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

Form EIA-1605 − Addendum B8. Geologic Sequestration

B24

3. Describe Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B8. Geologic Sequestration

B25

Addendum B9. Electricity Transmission and Distribution Improvements
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Date Action Was Initiated:

Month_________

Year_____________

2. Did You Report Transmission and Distribution Improvements Last Year?
 Yes
 No
3. Are You Reporting as a Control Area or as a Member of a Control Area?
 Yes
 No
Part B. Activity Data
1. Enter Activity Data

Item
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O

1

2

3

Description

Units of
Measure
(kWh or kVAh)

Quantity

Base Period
Electricity Entering T&D System From Own Generation
Electricity Delivered Through T&D System to End Users
(NOTE: Should Equal Total Wholesale and Retail Sales)
Electricity Imported into T&D System
Electricity Exported from T&D System
Net Imports of Electricity (C – D)
Actual Net Interchange (ANI) If Reporting on Control
Area Basis
Loss Ratio (A + E – B)/(A + E) or (A – (B + F))/(A – F)Ϯ
Reporting Year
Electricity Entering T&D System from Own Generation
Electricity Delivered Through T&D System to End Users
(NOTE: Should Equal Total Wholesale and Retail Sales)
Electricity Imported into T&D System
Electricity Exported from T&D System
Net Imports of Electricity (J-K)
Actual Net Interchange (ANI) If Reporting on Control
Area Basis
Loss Ratio (H + L – I)/(H + L) or (H – (I + M))/(H – M)Ϯ
Change In Loss Intensity (G – N) * (H + L) or (G – N) * (H
– M)Ϯ

kWh or kVAh

ϮUse second equation if reporting on a control area basis

Form EIA-1605 − Addendum B9. Electricity Transmission and Distribution Improvements

B26

Part C. Emission Reductions
1. Calculate Emission Reductions
1

Item
P
Q
R
S
T

Description
U.S. Avoided Emissions Benchmark for Electricity
System Power Factor (If Loss Intensity Calculated In
kVAh)
Total Emission Reductions [(O * P) / 1000] or [(O * (P *
Q))/1000]ϯ
Direct Emission Reductions [R * (I/(I + L))]
Avoided Emissions (from Avoided Electricity Imports) [R *
(L/(I + L))]

2

Units of
Measure
metric tons
CO2e/MWh

3

Quantity

metric tons CO2e
metric tons CO2e
metric tons CO2e

ϮUse second equation if calculating losses in kVAh

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Form EIA-1605 − Addendum B9. Electricity Transmission and Distribution Improvements

B27

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B9. Electricity Transmission and Distribution Improvements

B28

Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater
Treatment Facilities
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Enter Locations of Wastewater Treatment Facilities:
1

Name

2

City

3

Location
State
(if domestic
subentity)

2. Enter Date Anaerobic Digester Use Began: Month_________

4

Country
(if foreign
subentity)

Year_____________

3. Describe Action: ___________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
____________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No

Form EIA-1605 − Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities

B29

Part B. Action Quantification
1. Enter Volume of Gas Captured and Disposition (Mscf)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Flared
Electricity generation
Injected into pipeline/sale to
supply network
Direct use onsite
Direct use offsite
Total

Year 1

Year 2

Year 3

2. Enter Average Heat Content of Gas Captured and Utilized (Btu/scf)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Flared
Electricity generation
Injected into pipeline/sale to
supply network
Direct use onsite
Direct use offsite

Year 1

Year 2

Year 3

3. Enter Total Energy Content of Gas Captured and Utilized (MMBtu)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Flared
Electricity generation
Injected into pipeline/sale to
supply network
Direct use onsite
Direct use offsite
Total

Year 1

Year 2

Year 3

4. Enter Mass of Methane Captured and Utilized (metric tons CO2e)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period

Source and Disposition
Total Methane Captured

Year 1

Year 2

Year 3

Form EIA-1605 − Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities

B30

5. Enter Nitrous Oxide Emissions From Aerobic Conditions During the Base Period and Reporting Year
(metric tons CO2e)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period
Unit of
Measure

Year 1

Year 2

Year 3

Part C. Emission Reductions
1. Calculate Changes in Methane Captured and Utilized
1

Item
A
B
C

Description
Base Period Average Annual Quantity of Methane
Captured
Reporting Year Methane Captured
Change in Methane Captured (B – A)

2

3

Units of Measure

Quantity

metric tons CO2e
metric tons CO2e
metric tons CO2e

2. Calculate Changes in Disposition of Electricity Generation from Captured Methane (MWh)
1

2

3

4

5

6

7

Year 4

Base
Period
Average

Reporting
Year

Base Period
Item
D
E
F

Source and Disposition
Electricity Used Onsite
Electricity Sold
Total Generation

Year 1

Year 2

Year 3

3. Calculate Carbon Dioxide Displaced from Electricity Used Onsite (avoided emissions)
1

Item
G
H
I
J
K

Description
Base Period Average Electricity Used Onsite
Reporting Year Electricity Used Onsite
Reporting Year Incremental Electricity Used Onsite (H –
G)
Reporting Year Total Emissions from Electricity Used
Onsite*
Reporting Year Emissions Intensity of Electricity Used
Onsite (J/H)

L

Avoided Emissions Benchmark

M

Emission Reductions ((L – K) * I)

2

3

Units of Measure
MWh
MWh

Quantity

MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

*Include emissions from supplemental fossil fuel use only. If biogas was co-combusted with fossil fuels in Base Period, use
Addendum B5 (Emission Reductions from Energy Generation and Distribution) to report/register reduction associated with exported
electricity.

Form EIA-1605 − Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities

B31

4. Calculate Carbon Dioxide Displaced from Electricity Sales (avoided emissions)
1

Item
N
O
P
Q
R

Description
Base Period Average Electricity Sold
Reporting Year Electricity Sold
Reporting Year Incremental Electricity Sold (O – N)
Reporting Year Total Emissions from Electricity Sold*
Reporting Year Emissions Intensity of Electricity Sold
(Q/O)

S

Avoided Emissions Benchmark

T

Emission Reductions ((S – R) * P)

2

3

Units of Measure
MWh
MWh
MWh
metric tons CO2e
metric tons CO2e
/MWh
metric tons CO2e
/MWh
metric tons CO2e

Quantity

*Include emissions from supplemental fossil fuel use only. If biogas was co-combusted with fossil fuels in Base Period, use
Addendum B5 (Emission Reductions from Energy Generation and Distribution) to report/register reduction associated with exported
electricity.

5. Calculate Carbon Dioxide Displaced by Methane Supplied to a Natural Gas Distribution Network
Item
U
V
W

1

2

3

Description
Base Period Average Methane Supplied to a Natural Gas
Distribution Network
Reporting Year Methane Supplied to a Natural Gas
Distribution Network
Incremental Methane Supplied to a Natural Gas
Distribution Network (V-U)

Units of Measure

Quantity

MMBTU
MMBTU
MMBTU
metric tons
CO2e/MMBtu

X

Methane Emissions Factor

Y

Change in Carbon Dioxide Emissions from Methane
Supplied to a Natural Gas Distribution Network (W * X)

metric tons CO2e

6. Calculate Changes in Nitrous Oxide Emissions from Use of Anaerobic Digester
1

Item
Z
AA
BB

Description
Base Period Average Annual Nitrous Oxide Emissions
Reporting Year Quantity of Nitrous Oxide Emissions
Change in Nitrous Oxide Emissions (A – Z)

2

3

Units of Measure
metric tons CO2e
metric tons CO2e
metric tons CO2e

Quantity

7. Summarize Emission Reductions
1

Item
CC
DD
EE
FF
GG
HH

Description
Increase in Methane Captured
and Utilized
Carbon Dioxide Displaced from
Electricity Used Onsite
Carbon Dioxide Displaced from
Electricity Sales
Carbon Dioxide Displaced by
Methane Supplied to a Natural
Gas Distribution Network
Change in Nitrous Oxide
Emissions
Net Change in Emissions (CC +
DD + EE + FF – GG)

2

Units of
Measure
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

3

4

5

6

Emission Reductions
Direct

Indirect

Avoided

TOTAL

metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

Form EIA-1605 − Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities

B32

8. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

9. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

10. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
11. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B10. Capture of Methane from Anaerobic Digestion at Wastewater Treatment Facilities

B33

Addendum B11. Capture of Methane from Anaerobic Digestion of Animal Waste
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Enter Location of Livestock Management Facilities:
1

2

Name

3

Location
State
(if domestic
subentity)

City

2. Date Anaerobic Digester Use Began: Month_________

4

Country
(if foreign
subentity)

Year_____________

3. Describe Action: ________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
Part B. Action Quantification
1. Enter Action Characteristics
1

2

3

Name of Facility

Species of Animals
Producing Waste Handled
by the Digester

No. of Animals
of the Species

Form EIA-1605 − Addendum B11. Capture of Methane from Anaerobic Digestion of Animal Waste

B34

Part C. Emission Reductions
1. Calculate Carbon Dioxide Displaced by Methane Supplied to a Natural Gas Distribution Network
Item
A
B
C

1

2

3

Description
Base Period Average Methane Supplied to a Natural Gas
Distribution Network
Reporting Year Methane Supplied to a Natural Gas
Distribution Network
Incremental Methane Supplied to a Natural Gas
Distribution Network (B – A)

Units of Measure

Quantity

D

Methane Emissions Factor

E

Change in Carbon Dioxide Emissions from Methane
Supplied to a Natural Gas Distribution Network (C * D)

MMBTU
MMBTU
MMBTU
metric tons
CO2e/MMBtu
metric tons CO2e

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Form EIA-1605 − Addendum B11. Capture of Methane from Anaerobic Digestion of Animal Waste

B35

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B11. Capture of Methane from Anaerobic Digestion of Animal Waste

B36

Addendum B12. Recycling of Fly Ash
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Enter Name and Location of Concrete Manufacturing Facilities Where Fly Ash Was Recycled:
1

2

Name

3

4

Location
State
(if domestic
subentity)

City

2. Enter Date Fly Ash Recycling Began: Month_________

Country
(if foreign
subentity)

Year_____________

3. Describe Action: __________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
Part B. Action Quantification
1. Enter Total Quantity of Fly Ash Used and Portland Cement Displaced in Base Period and Reporting
Year
1

Item
A

Description
Fly Ash Used
in Place of
Portland
Cement

2

Unit of
Measure
metric
tons

3

4

5

6

7

8

Avg.

Reporting
Year
Quantity

Base Period Quantity
Yr 1

Yr 2

Yr 3

Yr 4

Form EIA-1605 − Addendum B12. Recycling of Fly Ash

B37

1

Item
B

Description
Portland
Cement
Displaced

2

3

Unit of
Measure
metric
tons

4

5

6

7

8

Avg.

Reporting
Year
Quantity

Base Period Quantity
Yr 1

Yr 2

Yr 3

Yr 4

2. Calculate Substitution Ratio of Fly Ash for Portland Cement for Base Period and Reporting Year
1

Item
C
D

Description
Substitution Ratio for Base Period (B7/A7)
Substitution Ratio for Reporting Year (B8/A8)

2

3

Unit of Measure
---

Quantity

Part C. Emission Reductions
1. Calculate Reduction in Indirect Emissions
Item

1

2

3

Description

Unit of Measure
metric tons C
equivalent/ton
metric tons C
equivalent/ton
--

Quantity

E

Net Emissions Factor for Virgin Cement

F

Net Emissions Factor for Fly Ash

G

Conversion Factor for Carbon Equivalent to CO2e
Emissions Displaced in Base Period (A7 * ((E/C) – F) *
G))
Emissions Displaced in Reporting Year (A8 * ((E/C) – F)
* G))
Indirect Emission Reductions (I – H)

H
I
J

0.2396
0.0021
3.667

metric tons CO2e
metric tons CO2e
metric tons CO2e

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement

Form EIA-1605 − Addendum B12. Recycling of Fly Ash

B38

5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emission (optional):

Part D. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B12. Recycling of Fly Ash

B39

Addendum B13. Demand-Side Management and Other Reduction Programs
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
If you are reporting more than one program, copy Part A and complete for each program.
1. Enter Name of Program:
2. Enter Location of Demand-Side Management Program
City: ___________________ State (if domestic subentity): ____ Country (if foreign subentity): _____
3. Enter Date Program Began: Month_________

Year_____________

4. Provide Summary Description of Program: __________________________________________
_____________________________________________________________________________
_____________________________________________________________________________
_____________________________________________________________________________
_____________________________________________________________________________
_____________________________________________________________________________
5. Check the Applicable Box(es) to Indicate What the Program Provides to Very Small Emitters
(entities that typically emit below 500 tons of CO2e per year):
 Information or other technical assistance
 Financial incentives
 Direct installation or investment
 Other non-commercial services
6. Identify Sector(s) of Very Small Emitters Targeted (please check all that apply)
 Residential
 Small industrial
 Commercial
 Other, specify: _________________________________
7. Describe Program Evaluation Method:
rd

8. Enter Name and Describe Qualifications of 3 Party Verifier
Name: ______________________________________________________________________
Qualifications: ________________________________________________________________
____________________________________________________________________________
9. Enter Annual Energy Usage Reductions in Reporting Year (if not applicable, go to Question 10)
Unit _______________ Quantity _______________
10. Enter Greenhouse Gas Emission Reductions in Reporting Year (metric tons CO2e)
_______________
11. Do the Reductions Qualify for Registration?  Yes  No
To register reductions, the DSM or other program must meet all of the following criteria:
•
The DSM or other program must be funded by the reporting entity.
•
The estimated effects reported must first occur after the entity's start year and must cause a
reduction of the total emissions of residential or other very small emitters.
•
The qualifying program must provide information or other technical assistance, financial incentives,
direct installation or investment, or other non-commercial services to very small emitters to assist
them achieving emission reductions recognized by these guidelines.
•
Program evaluations must be performed and/or certified by an independent and qualified third party
verifier. The third party must certify that the estimated annual energy usage or emission reductions
were estimated in accordance with these guidelines.

Form EIA-1605 − Addendum B13. Demand-Side Management and Other Reduction Programs

B40

Part B. Emission Reductions
1. Summarize Energy Savings and Greenhouse Gas Emission Reductions by Program:
1

Program Name

2

3

Total Energy Savings
Unit
Amount

4

5

Total Emission Reductions
(CO2e)
Unit
Amount

Total Emission Reductions

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Form EIA-1605 − Addendum B13. Demand-Side Management and Other Reduction Programs

B41

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B13. Demand-Side Management and Other Reduction Programs

B42

Addendum B14. Combined Heat and Power
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Quantification
1. Enter Plant Emissions Data
Item
A
B
C
D

1

2

3

Description
Base Period Average
Total CHP Plant Fuel Use
Total CHP Plant Emissions*
Reporting Year
Total CHP Plant Fuel Use
Total CHP Plant Emissions*

Units of Measure

Quantity

MMBtu
metric tons CO2e
MMBtu
metric tons CO2e

* Derive from fuel use (values A and C) using the methods in Chapter 1, Part C of the Technical Guidelines (Stationary
Combustion).

2. Enter Activity Data
1

Item

K
L
M
N
O
P

Description
Base Period Average
Total Thermal Generation
Total Electrical Generation
Thermal Exports
Electricity Exports
Thermal Generating Efficiency**
Electrical Generating Efficiency***
Reporting Year
Total Thermal Generation
Total Electrical Generation
Thermal Exports
Electricity Exports
Thermal Generating Efficiency**
Electrical Generating Efficiency***

Q

Thermal Avoided Emissions Benchmark

R

Electricity Avoided Emissions Benchmark

E
F
G
H
I
J

2

3

Units of Measure

Quantity

MMBtu
MMBtu*
MMBtu
MMBtu*
%
%
MMBtu
MMBtu*
MMBtu
MMBtu*
%
%
metric tons CO2e
/MMBtu
metric tons CO2e
/MWh

* To convert electrical output to MMBtu, multiply electrical output in MWh by 3.412
** If the efficiency of the thermal energy generation (EfficiencyThermal) is unknown, reporters may use a default value of 80 percent.
*** If the efficiency of the electrical energy generation (EfficiencyThermal) is unknown, reporters may use a default value of 35 percent.

3. Calculate Emissions for Each Generating Stream
1

Item
S
T
U
V

Description
Base Period
Total Thermal Generation Emissions = B * (E / I) / ((E / I) + (F / J))
Total Electricity Generation Emissions = B – S
Reporting Year
Total Thermal Generation Emissions =
D * (K / O) / ((K / O) + (L / P))
Total Electricity Generation Emissions = D – U

2

Emissions (Metric
Tons CO2e)

*If the efficiency of the thermal energy generation (EfficiencyThermal) is unknown, reporters may use a default value of 0.8.

Form EIA-1605 − Addendum B14. Combined Heat and Power

B43

4.

Calculate Emissions Associated With Thermal and Electrical Energy Exported and Used Onsite

Item

1

2

3

Description

Units of Measure

Emissions

Base Period
Exported Thermal Generation Emissions ((G / E) * S)
Exported Electrical Generation Emissions ((H / F) * T)
Onsite Thermal Generation Emissions (S – W)
Onsite Electrical Generation Emissions (T – X)
Reporting Year
Exported Thermal Generation Emissions ((M / K) * U)
Exported Electrical Generation Emissions ((N / L) * V)
Onsite Thermal Generation Emissions (U – AA)
Onsite Electrical Generation Emissions (V – BB)

W
X
Y
Z
AA
BB
CC
DD

metric tons CO2e
metric tons CO2e
metric tons CO2e
metric tons CO2e
metric tons CO2e
metric tons CO2e
metric tons CO2e
metric tons CO2e

Part B. Emission Reductions
1. Calculate Direct Emission Reductions From Onsite Energy Use (Note: Reductions can be calculated
using either the Changes in Emissions Intensity method or the Changes in Absolute Emissions
method. Reporters should select one method, and use the appropriate formulas provided)
a. Calculate Changes in Emissions Intensity From Energy Used Onsite
1

Item
EE
FF

Description
Emission Reductions from Thermal Generation Used Onsite
((S / E) – (U / K)) * (K – M)
Emission Reductions from Electrical Generation Used Onsite
((T / F) – (V / L)) * (L – N)

2

3

Units of
Measure
metric tons
CO2e
metric tons
CO2e

Direct
Emissions

b. Calculate Absolute Changes in Emissions From Energy Used Onsite
1

Item
GG
HH

Description
Emission Reductions from Thermal Generation Used Onsite
(Y – CC)
Emission Reductions from Electrical Generation Used Onsite
(Z – DD)

2

3

Units of
Measure
metric tons
CO2e
metric tons
CO2e

Direct
Emissions

2. Calculate Emission Reductions Associated With Energy Exports
a. Calculate Thermal Energy Emission Reductions Due to Improvements in Historical Emissions
Intensity
1

Item
II

Description
Emission Reductions
(((S / E) – (U / K)) * G)

2

3

Units of
Measure

Emission
Reductions

metric tons CO2e

Form EIA-1605 − Addendum B14. Combined Heat and Power

B44

b. Calculate Thermal Energy Emission Reductions Due to Incremental Changes in Thermal Exports
1

Item
JJ
c.

Description
Emission Reductions
(Q – (U / K)) * (M – G))

KK

3

Emission
Reductions

metric tons CO2e

Calculate Electricity Emission Reductions Due to Improvements in Historical Emissions Intensity
1

Item

2

Units of
Measure

Description
Emission Reductions
(((T / F) – (V / L)) * H)

2

3

Units of
Measure

Emission
Reductions

metric tons CO2e

d. Calculate Electricity Emission Reductions Due to Incremental Changes in
Item
LL

1

2

3

Description

Units of
Measure

Emission
Reductions

Emission Reductions
(R – (V / L)) * (N – H))

metric tons CO2e

3. Summarize Emission Reductions
1

Item
MM
NN
OO

Description
Reductions Associated with Onsite Energy Use
(EE + FF) or (GG + HH)
Total Emission Reductions from Energy Generation and
Exports (II + JJ + KK + LL)
Total Emission Reductions (MM + NN)

2

3

Units of
Measure

Quantity

metric tons CO2e
metric tons CO2e
metric tons CO2e

4. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

5. Describe Actions That Were the Likely Causes of the Reductions Achieved:

6. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement

Form EIA-1605 − Addendum B14. Combined Heat and Power

B45

7. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

Name of Recipient

Gas
CO2e
CO2e
CO2e
CO2e
CO2e

Units
metric tons
metric tons
metric tons
metric tons
metric tons

Amount

TOTAL

Form EIA-1605 − Addendum B14. Combined Heat and Power

B46

Addendum B15. Other Action-specific Reductions
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Explain Why It Is Not Possible to Use Any of The Methods in Addendum B1-B14

2. Enter Date Action Was Initiated:

Month_________

Year_____________

3. Was the Action Reported Last Year?
 Yes
 No
4. Identify Activities Affected by the Action:

5. Identify Equipment Affected by the Action:

6. Identify the Emission Sources Affected by the Action:

Form EIA-1605 − Addendum B15. Other Action-specific Reductions

B47

Part B. Emission Reductions Computation
1. Enter Activity Data, Emission Coefficients, and Conversion Factors
Item
A
B
C
D
E
F
G
H
I
J

1

2

3

Description

Units of Measure

Quantity

2. Enter Equation(s) Used to Calculate Emissions and Emission Reductions in Question 3:

3. Calculate Emission Reductions
1

Item

Description

K

Base Period Emissions

L

Reporting Year Emissions

M
N

Registered Emission Reductions
(K - L)
Reported Emission Reductions (K
- L)

2

Units of
Measure
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e
metric tons
CO2e

3

4

5

Source of Emissions Affected
Indirect
Emissions
from
Other
Direct
Purchased
Indirect
Emissions
Energy
Emissions

4. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

Form EIA-1605 − Addendum B15. Other Action-specific Reductions

B48

5. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

6. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
7. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (metric tons
CO2e)
1

2

3

4

5

Name of Recipient

Emissions Type*

Gas
CO2e

Units
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons
metric
tons

Amount

CO2e
CO2e
CO2e
Total Direct Emission Reductions
Total Indirect Emission Reductions from
Purchased Energy
Total Other Indirect Emission
Reductions

CO2e
CO2e
CO2e

*Direct, Indirect from Purchased Energy, Other Indirect.

Form EIA-1605 − Addendum B15. Other Action-specific Reductions

B49

Addendum B16. Destruction of Chlorofluorocarbons
If Reporting Subentities, Enter Name of Subentity: ___________________________________
Part A. Action Identification
1. Enter Name and Location of Facility Where CFCs Were Destroyed:
1

2

Name

3

4

Location
State
(if domestic
subentity)

City

2. Enter Date CFC Destruction Began: Month_________

Country
(if foreign
subentity)

Year_____________

3. Describe Action: __________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
________________________________________________________________________________
4. Was the Action Reported Last Year?
 Yes
 No
Part B. Emission Reductions
1. Enter Type and Quantity of CFCs Destroyed
1

CFC Gas Type

2

Unit

3

4

Amount

Did you Transfer the Reduction to Another
Reporting Entity? (Y/N)
(if yes, complete Part C)

Form EIA-1605 − Addendum B16. Destruction of Chlorofluorocarbons

B50

2. Identify Types of Actions That Were the Likely Cause of the Reductions Achieved [Enter codes from
Appendix M]

3. Describe the Actions That Were the Likely Causes of the Reductions Achieved:

4. Identify the Cause(s) of the Emission Reduction(s) (check all that apply):
 Voluntary action
 Plant closing
 Government requirement
 Federal requirement
 State requirement
 Local requirement
5. Summarize Benefits and Costs of the Actions Taken to Reduce Greenhouse Gas Emissions
(optional):

Part C. Distribution of Emission Reductions to Other 1605(b) Reporters
1. Where Applicable, Enter Emission Reductions Distributed to Other 1605(b) Reporters (kilograms)
1

2

Name of Recipient

Gas

3

Units
kilograms
kilograms
kilograms
kilograms
kilograms

Form EIA-1605 − Addendum B16. Destruction of Chlorofluorocarbons

4

Amount

B51

Addendum C. Country-specific Factors Used to Estimate Emissions from Foreign
Sources
1. Enter Information on Emission Factors Used to Estimate Emissions for Foreign Subentities
1

2

Emissions
Type

Emissions
Source

3

4

5

Gas

Unit of
Measure

Factor
Value

6

7

Countries/ Regions

Factor
Source

2. Identify Publications and Other Sources for Factors Used to Estimate Foreign Emissions
Item
Source of Factors
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
Q
R
S

Addendum C. Country-specific Factors Used to Estimate Emissions from Foreign Sources

C1

3. Document Reporter-defined Emission Factors.

Addendum C. Country-specific Factors Used to Estimate Emissions from Foreign Sources

C2


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