Appendix E  
Calculation Methods Appendix MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq=Jc9 vqaqpepm0xbba9pwe9Q8fs0=yqaqpepae9pg0FirpepeKkFr0xfr=x fr=xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaqefmuySLMyYL gaiuqajugadabaaaWTbKtapeGaa83eGaaa@3B09@ Part II.C.3.b


 

II.C.3.b Fuel Combustion Emissions for Facilities with On-Site Generation or Boiler Units

Some facilities use on-site fuel combustion to run power generation, cogeneration, or boiler units, and then use the resulting electricity, steam, heat, and hot water in various subprocesses. These facilities may also source additional energy from off-site, particularly for electricity. Within the facility, however, there is no difference between consuming the portion of energy sourced from on-site units and consuming the portion of energy purchased from a third party.532F[529] For this reason, the calculations assume that the proportional use of each energy type is the same across all sources MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq=Jc9 vqaqpepm0xbba9pwe9Q8fs0=yqaqpepae9pg0FirpepeKkFr0xfr=x fr=xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaqefmuySLMyYL gaiuaajugybabaaaaaaaaapeGaa8hfGaaa@3A75@ e.g., that electricity from an on-site unit and electricity sourced from the grid was used in the same proportions as the facility-wide data in question 3.9 for each subprocess. The questionnaire required facilities that reported the use of on-site power generation, cogeneration, or multipurpose nonelectric boiler units to first allocate fuel use among these units and all other on-site fuel combustion in question 3.7. For these facilities, the subprocess-specific quantities of fuel use reported in question 3.8 only represented fuel that was not first combusted in the generation or boiler units, to avoid double counting. The calculations instead used data in questions 3.9 through 3.12 on subprocess-specific use of electricity, steam, heat, and hot water to allocate the emissions from the power generation, cogeneration, and boilers to subprocesses. This mapping of fuel combustion in power generation, cogeneration, boiler units, and all other fuel combustion to electricity, steam, heat, hot water, and question 3.8 fuel use to develop subprocess-specific emission estimates is shown in figure E.1, below.

Figure E.1 Mapping of facility-wide scope 1 fuel combustion emissions to subprocess-specific estimates

Figure E.1 is a process map that shows that the facility-wide emissions are disaggregated into calculations of emissions at power generation, cogeneration, and boiler units, and all other fuel combustion. The unit-specific emissions are then mapped to electricity, steam, heat, and hot water output. The emissions associated with electricity and each of the useful thermal outputs are then used with subprocess-specific questionnaire data from questions 3.8 through 3.12 to calculate the subprocess-specific estimates.

Source: Compiled by the USITC.

Note: The “Q” labels in the diagram above indicates the question number in the Commission’s facility-level questionnaire gathering this information. USITC, Greenhouse Gas (GHG) Emissions Intensities Questionnaire: Facility-Level, 2024, section 3.

Calculating the subprocess-specific emissions for other fuel combustion (from question 3.7) is similar to the subprocess-specific fuel combustion calculation for facilities with less complicated energy sourcing. The only difference is that the facility-wide emissions are multiplied by an additional ratio to remove the fuel-specific emissions associated with generation and boiler units (equation E.16). This ratio is the amount of fuel used in all other on-site fuel combustion in question 3.7 ( us e fuel,othercom MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyDaiaadohacaWGLbWdamaaBaaaleaapeGaamOzaiaadwhacaWG LbGaamiBaiaacYcacaWGVbGaamiDaiaadIgacaWGLbGaamOCaiaado gacaWGVbGaamyBaaWdaeqaaaaa@453C@  ) divided by the total fuel use reported in question 3.7 ( Σ unit us e fuel,unit MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaeu4Odm1damaaBaaaleaapeGaamyDaiaad6gacaWGPbGaamiDaaWd aeqaaOWdbmaabmaapaqaa8qacaWG1bGaam4CaiaadwgapaWaaSbaaS qaa8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadwhacaWGUbGa amyAaiaadshaa8aabeaaaOWdbiaawIcacaGLPaaaaaa@4915@  ).

S1F C fuel,othercom, subproc =facilityGH G fuel * us e fuel,othercom Σ unit us e fuel,unit * us e fuel,subproc Σ subproc   us e fuel,subproc E.16 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaad+gacaWG0bGaam iAaiaadwgacaWGYbGaam4yaiaad+gacaWGTbGaaiilaiaacckacaWG ZbGaamyDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaapaqabaGcpe Gaeyypa0JaamOzaiaadggacaWGJbGaamyAaiaadYgacaWGPbGaamiD aiaadMhacaWGhbGaamisaiaadEeapaWaaSbaaSqaa8qacaWGMbGaam yDaiaadwgacaWGSbaapaqabaGcpeGaaiOkamaalaaapaqaa8qacaWG 1bGaam4CaiaadwgapaWaaSbaaSqaa8qacaWGMbGaamyDaiaadwgaca WGSbGaaiilaiaad+gacaWG0bGaamiAaiaadwgacaWGYbGaam4yaiaa d+gacaWGTbaapaqabaaakeaapeGaeu4Odm1damaaBaaaleaapeGaam yDaiaad6gacaWGPbGaamiDaaWdaeqaaOWdbmaabmaapaqaa8qacaWG 1bGaam4CaiaadwgapaWaaSbaaSqaa8qacaWGMbGaamyDaiaadwgaca WGSbGaaiilaiaadwhacaWGUbGaamyAaiaadshaa8aabeaaaOWdbiaa wIcacaGLPaaaaaGaaiOkamaalaaapaqaa8qacaWG1bGaam4Caiaadw gapaWaaSbaaSqaa8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaa dohacaWG1bGaamOyaiaadchacaWGYbGaam4Baiaadogaa8aabeaaaO qaa8qacqqHJoWupaWaaSbaaSqaa8qacaWGZbGaamyDaiaadkgacaWG WbGaamOCaiaad+gacaWGJbaapaqabaGcpeGaaiiOamaabmaapaqaa8 qacaWG1bGaam4CaiaadwgapaWaaSbaaSqaa8qacaWGMbGaamyDaiaa dwgacaWGSbGaaiilaiaadohacaWG1bGaamOyaiaadchacaWGYbGaam 4Baiaadogaa8aabeaaaOWdbiaawIcacaGLPaaaaaGaaGzbVpaabmaa paqaa8qacaWGfbGaaiOlaiaaigdacaaI2aaacaGLOaGaayzkaaaaaa aa@AF9B@

 

As shown in figure E.1, fuel combustion quantities from question 3.7 ( us e fuel,power MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyDaiaadohacaWGLbWdamaaBaaaleaapeGaamOzaiaadwhacaWG LbGaamiBaiaacYcacaWGWbGaam4BaiaadEhacaWGLbGaamOCaaWdae qaaaaa@4279@ , us e fuel,cogen MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyDaiaadohacaWGLbWdamaaBaaaleaapeGaamOzaiaadwhacaWG LbGaamiBaiaacYcacaWGJbGaam4BaiaadEgacaWGLbGaamOBaaWdae qaaaaa@4258@ , us e fuel,boiler MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyDaiaadohacaWGLbWdamaaBaaaleaapeGaamOzaiaadwhacaWG LbGaamiBaiaacYcacaWGIbGaam4BaiaadMgacaWGSbGaamyzaiaadk haa8aabeaaaaa@434E@  ) determine the share of the facility-wide, fuel-specific emissions to apply to the facility’s power generation, cogeneration, and boiler units, respectively. Cogeneration units produce a mix of electricity and useful thermal outputs (steam, heat, and hot water), and boilers may produce more than one type of useful thermal output. Equations E.17 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq=Jc9 vqaqpepm0xbba9pwe9Q8fs0=yqaqpepae9pg0FirpepeKkFr0xfr=x fr=xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaqefmuySLMyYL gaiuaajugybabaaaaaaaaapeGaa83eGaaa@3A74@ E.19 first compute the fuel combustion emissions for each of these units ( S1F C fuel,power MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadAgacaWG 1bGaamyzaiaadYgacaGGSaGaamiCaiaad+gacaWG3bGaamyzaiaadk haa8aabeaaaaa@42C3@ , S1F C fuel,cogen MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadAgacaWG 1bGaamyzaiaadYgacaGGSaGaam4yaiaad+gacaWGNbGaamyzaiaad6 gaa8aabeaaaaa@42A2@ , S1F C fuel,boiler MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadAgacaWG 1bGaamyzaiaadYgacaGGSaGaamOyaiaad+gacaWGPbGaamiBaiaadw gacaWGYbaapaqabaaaaa@4398@  ), before further allocating the unit emissions to their different energy outputs.

S1F C fuel,power =facilityGH G fuel * us e fuel,power Σ unit us e fuel,unit E.17 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadchacaWGVbGaam 4DaiaadwgacaWGYbaapaqabaGcpeGaeyypa0JaamOzaiaadggacaWG JbGaamyAaiaadYgacaWGPbGaamiDaiaadMhacaWGhbGaamisaiaadE eapaWaaSbaaSqaa8qacaWGMbGaamyDaiaadwgacaWGSbaapaqabaGc peGaaiOkamaalaaapaqaa8qacaWG1bGaam4CaiaadwgapaWaaSbaaS qaa8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadchacaWGVbGa am4DaiaadwgacaWGYbaapaqabaaakeaapeGaeu4Odm1damaaBaaale aapeGaamyDaiaad6gacaWGPbGaamiDaaWdaeqaaOWdbmaabmaapaqa a8qacaWG1bGaam4CaiaadwgapaWaaSbaaSqaa8qacaWGMbGaamyDai aadwgacaWGSbGaaiilaiaadwhacaWGUbGaamyAaiaadshaa8aabeaa aOWdbiaawIcacaGLPaaaaaGaaGzbVpaabmaapaqaa8qacaWGfbGaai OlaiaaigdacaaI3aaacaGLOaGaayzkaaaaaaaa@789D@

 

S1F C fuel,cogen =facilityGH G fuel * us e fuel,cogen Σ unit us e fuel,unit E.18 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadogacaWGVbGaam 4zaiaadwgacaWGUbaapaqabaGcpeGaeyypa0JaamOzaiaadggacaWG JbGaamyAaiaadYgacaWGPbGaamiDaiaadMhacaWGhbGaamisaiaadE eapaWaaSbaaSqaa8qacaWGMbGaamyDaiaadwgacaWGSbaapaqabaGc peGaaiOkamaalaaapaqaa8qacaWG1bGaam4CaiaadwgapaWaaSbaaS qaa8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadogacaWGVbGa am4zaiaadwgacaWGUbaapaqabaaakeaapeGaeu4Odm1damaaBaaale aapeGaamyDaiaad6gacaWGPbGaamiDaaWdaeqaaOWdbmaabmaapaqa a8qacaWG1bGaam4CaiaadwgapaWaaSbaaSqaa8qacaWGMbGaamyDai aadwgacaWGSbGaaiilaiaadwhacaWGUbGaamyAaiaadshaa8aabeaa aOWdbiaawIcacaGLPaaaaaGaaGzbVpaabmaapaqaa8qacaWGfbGaai OlaiaaigdacaaI4aaacaGLOaGaayzkaaaaaaaa@785C@

 

S1F C fuel,boiler =facilityGH G fuel * us e fuel,boiler Σ unit us e fuel,unit E.19 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGMbGaamyDaiaadwgacaWGSbGaaiilaiaadkgacaWGVbGaam yAaiaadYgacaWGLbGaamOCaaWdaeqaaOWdbiabg2da9iaadAgacaWG HbGaam4yaiaadMgacaWGSbGaamyAaiaadshacaWG5bGaam4raiaadI eacaWGhbWdamaaBaaaleaapeGaamOzaiaadwhacaWGLbGaamiBaaWd aeqaaOWdbiaacQcadaWcaaWdaeaapeGaamyDaiaadohacaWGLbWdam aaBaaaleaapeGaamOzaiaadwhacaWGLbGaamiBaiaacYcacaWGIbGa am4BaiaadMgacaWGSbGaamyzaiaadkhaa8aabeaaaOqaa8qacqqHJo WupaWaaSbaaSqaa8qacaWG1bGaamOBaiaadMgacaWG0baapaqabaGc peWaaeWaa8aabaWdbiaadwhacaWGZbGaamyza8aadaWgaaWcbaWdbi aadAgacaWG1bGaamyzaiaadYgacaGGSaGaamyDaiaad6gacaWGPbGa amiDaaWdaeqaaaGcpeGaayjkaiaawMcaaaaacaaMf8+aaeWaa8aaba WdbiaadweacaGGUaGaaGymaiaaiMdaaiaawIcacaGLPaaaaaaaaa@7A49@

 

 

The fuel-specific emissions for each unit are then totaled across fuel types to estimate total fuel combustion emissions for each unit. The formula for power generation units is shown as an example in equation E.20.

S1F C  power,elec = Σ fuel S1F C fuel,power E.20 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaGGGcGaamiCaiaad+gacaWG3bGaamyzaiaadkhacaGGSaGaam yzaiaadYgacaWGLbGaam4yaaWdaeqaaOWdbiabg2da9iabfo6at9aa daWgaaWcbaWdbiaadAgacaWG1bGaamyzaiaadYgaa8aabeaak8qada qadaWdaeaapeGaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWd biaadAgacaWG1bGaamyzaiaadYgacaGGSaGaamiCaiaad+gacaWG3b Gaamyzaiaadkhaa8aabeaaaOWdbiaawIcacaGLPaaacaaMf8+aaeWa a8aabaWdbiaadweacaGGUaGaaGOmaiaaicdaaiaawIcacaGLPaaaaa aaaa@5F57@

 

Before estimating subprocess-specific scope 1 emissions from electricity use, the calculations split apart emissions from cogeneration units between electricity S1F C cogen,elec   MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape WaaeWaa8aabaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGLbGaam iBaiaadwgacaWGJbaapaqabaaak8qacaGLOaGaayzkaaGaaiiOaaaa @4575@  and useful thermal outputs S1F C cogen, nonelec MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape WaaeWaa8aabaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaGGGcGaam OBaiaad+gacaWGUbGaamyzaiaadYgacaWGLbGaam4yaaWdaeqaaaGc peGaayjkaiaawMcaaaaa@484F@ . The DOE’s identification number for the facility’s cogeneration units, as reported in question 3.3c, is used to identify the unit’s electric allocation factor ( elecfacto r plant MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyzaiaadYgacaWGLbGaam4yaiaadAgacaWGHbGaam4yaiaadsha caWGVbGaamOCa8aadaWgaaWcbaWdbiaadchacaWGSbGaamyyaiaad6 gacaWG0baapaqabaaaaa@4469@  ) in eGRID’s plant-level data.533F[530] Equation E.21 uses this factor to estimate the share of the cogeneration unit’s emissions associated with the unit’s electric power output ( S1F C cogen,elec MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogacaWG VbGaam4zaiaadwgacaWGUbGaaiilaiaadwgacaWGSbGaamyzaiaado gaa8aabeaaaaa@428F@  ).

S1F C cogen,elec =S1F C cogen *elecfacto r plant   E.21 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGLbGaam iBaiaadwgacaWGJbaapaqabaGcpeGaeyypa0Jaam4uaiaaigdacaWG gbGaam4qa8aadaWgaaWcbaWdbiaadogacaWGVbGaam4zaiaadwgaca WGUbaapaqabaGcpeGaaiOkaiaadwgacaWGSbGaamyzaiaadogacaWG MbGaamyyaiaadogacaWG0bGaam4BaiaadkhapaWaaSbaaSqaa8qaca WGWbGaamiBaiaadggacaWGUbGaamiDaaWdaeqaaOWdbiaacckacaaM f8+aaeWaa8aabaWdbiaadweacaGGUaGaaGOmaiaaigdaaiaawIcaca GLPaaaaaaaaa@626A@

 

For any facilities generating more electricity than they used at the facility, the questionnaire allowed a negative value to be reported in question 4.1 for electricity purchases. Equations E.22.a and E.22.b calculate scope 1 fuel combustion emissions associated with electricity for facilities with negative net purchases and positive net purchases, respectively. Equation E.22.a incorporates the ratio of electricity used on-site, where purc h elec MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamiCaiaadwhacaWGYbGaam4yaiaadIgapaWaaSbaaSqaa8qacaWG LbGaamiBaiaadwgacaWGJbaapaqabaaaaa@3ECF@  represents negative net purchases (electricity sold off-site) and ( ge n power,elec +ge n cogen, elec MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4zaiaadwgacaWGUbWdamaaBaaaleaapeGaamiCaiaad+gacaWG 3bGaamyzaiaadkhacaGGSaGaamyzaiaadYgacaWGLbGaam4yaaWdae qaaOWdbiabgUcaRiaadEgacaWGLbGaamOBa8aadaWgaaWcbaWdbiaa dogacaWGVbGaam4zaiaadwgacaWGUbGaaiilaiaacckacaWGLbGaam iBaiaadwgacaWGJbaapaqabaaaaa@5098@  ) is the sum of on-site electricity generation reported in question 3.3.

If purc h elec <0: MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamysaiaadAgacaGGGcGaamiCaiaadwhacaWGYbGaam4yaiaadIga paWaaSbaaSqaa8qacaWGLbGaamiBaiaadwgacaWGJbaapaqabaGcpe GaeyipaWJaaGimaiaacQdaaaa@4442@

S1F C  elec = ge n power,elec +ge n cogen, elec +purc h elec ge n power,elec +ge n cogen,elec  (S1F C cogen,elec +S1F C power,elec )  E.22.a MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaacckacaWG LbGaamiBaiaadwgacaWGJbaapaqabaGcpeGaeyypa0ZaaSaaa8aaba Wdbmaabmaapaqaa8qacaWGNbGaamyzaiaad6gapaWaaSbaaSqaa8qa caWGWbGaam4BaiaadEhacaWGLbGaamOCaiaacYcacaWGLbGaamiBai aadwgacaWGJbaapaqabaGcpeGaey4kaSIaam4zaiaadwgacaWGUbWd amaaBaaaleaapeGaam4yaiaad+gacaWGNbGaamyzaiaad6gacaGGSa GaaiiOaiaadwgacaWGSbGaamyzaiaadogaa8aabeaak8qacqGHRaWk caWGWbGaamyDaiaadkhacaWGJbGaamiAa8aadaWgaaWcbaWdbiaadw gacaWGSbGaamyzaiaadogaa8aabeaaaOWdbiaawIcacaGLPaaaa8aa baWdbiaadEgacaWGLbGaamOBa8aadaWgaaWcbaWdbiaadchacaWGVb Gaam4DaiaadwgacaWGYbGaaiilaiaadwgacaWGSbGaamyzaiaadoga a8aabeaak8qacqGHRaWkcaWGNbGaamyzaiaad6gapaWaaSbaaSqaa8 qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGLbGaamiB aiaadwgacaWGJbaapaqabaaaaOWdbiaacckacaGGOaGaam4uaiaaig dacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogacaWGVbGaam4zaiaa dwgacaWGUbGaaiilaiaadwgacaWGSbGaamyzaiaadogaa8aabeaak8 qacqGHRaWkcaWGtbGaaGymaiaadAeacaWGdbWdamaaBaaaleaapeGa amiCaiaad+gacaWG3bGaamyzaiaadkhacaGGSaGaamyzaiaadYgaca WGLbGaam4yaaWdaeqaaOWdbiaacMcacaaMf8UaaiiOamaabmaapaqa a8qacaWGfbGaaiOlaiaaikdacaaIYaGaaiOlaiaadggaaiaawIcaca GLPaaaaaa@A4F6@

Else:

S1F C  elec =S1F C cogen,elec +S1F C power,elec E.22.b MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaGGGcGaamyzaiaadYgacaWGLbGaam4yaaWdaeqaaOWdbiabg2 da9iaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaWGJbGa am4BaiaadEgacaWGLbGaamOBaiaacYcacaWGLbGaamiBaiaadwgaca WGJbaapaqabaGcpeGaey4kaSIaam4uaiaaigdacaWGgbGaam4qa8aa daWgaaWcbaWdbiaadchacaWGVbGaam4DaiaadwgacaWGYbGaaiilai aadwgacaWGSbGaamyzaiaadogaa8aabeaakiaaywW7peWaaeWaa8aa baWdbiaadweacaGGUaGaaGOmaiaaikdacaGGUaGaamOyaaGaayjkai aawMcaaaaaaaa@6187@

 

Then, equation E.23 allocates facility-wide scope 1 electricity generation emissions (S1F C elec MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaaiikaiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaWG LbGaamiBaiaadwgacaWGJbaapaqabaaaaa@3DE6@  ) to subprocesses S1F C elec,subproc MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape WaaeWaa8aabaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGLbGaamiBaiaadwgacaWGJbGaaiilaiaadohacaWG1bGaam OyaiaadchacaWGYbGaam4Baiaadogaa8aabeaaaOWdbiaawIcacaGL Paaaaaa@464D@ .

S1F C elec,subproc =S1F C elec * us e elec,subproc Σ subproc   us e elec,subproc E.23 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGLbGaamiBaiaadwgacaWGJbGaaiilaiaadohacaWG1bGaam OyaiaadchacaWGYbGaam4Baiaadogaa8aabeaak8qacqGH9aqpcaWG tbGaaGymaiaadAeacaWGdbWdamaaBaaaleaapeGaamyzaiaadYgaca WGLbGaam4yaaWdaeqaaOWdbiaacQcadaWcaaWdaeaapeGaamyDaiaa dohacaWGLbWdamaaBaaaleaapeGaamyzaiaadYgacaWGLbGaam4yai aacYcacaWGZbGaamyDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaa paqabaaakeaapeGaeu4Odm1damaaBaaaleaapeGaam4Caiaadwhaca WGIbGaamiCaiaadkhacaWGVbGaam4yaaWdaeqaaOWdbiaacckadaqa daWdaeaapeGaamyDaiaadohacaWGLbWdamaaBaaaleaapeGaamyzai aadYgacaWGLbGaam4yaiaacYcacaWGZbGaamyDaiaadkgacaWGWbGa amOCaiaad+gacaWGJbaapaqabaaak8qacaGLOaGaayzkaaaaaiaayw W7daqadaWdaeaapeGaamyraiaac6cacaaIYaGaaG4maaGaayjkaiaa wMcaaaaaaaa@7C06@

 

The next set of equations split emissions from non-electric cogeneration ( S1F C cogen,nonelec ) MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogacaWG VbGaam4zaiaadwgacaWGUbGaaiilaiaad6gacaWGVbGaamOBaiaadw gacaWGSbGaamyzaiaadogaa8aabeaak8qacaGGPaaaaa@4630@  and boiler units S1F C boiler MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape WaaeWaa8aabaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGIbGaam4BaiaadMgacaWGSbGaamyzaiaadkhaa8aabeaaaO WdbiaawIcacaGLPaaaaaa@40EA@  to develop emissions estimates for steam, heat, and hot water use. Non-electric cogeneration emissions are the total emissions associated with on-site generation of useful thermal outputs (equations E.24 and E.25):

S1F C cogen,nonelec =S1F C cogen S1F C cogen,elec   E.24 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGUbGaam 4Baiaad6gacaWGLbGaamiBaiaadwgacaWGJbaapaqabaGcpeGaeyyp a0Jaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogaca WGVbGaam4zaiaadwgacaWGUbaapaqabaGcpeGaeyOeI0Iaam4uaiaa igdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogacaWGVbGaam4zai aadwgacaWGUbGaaiilaiaadwgacaWGSbGaamyzaiaadogaa8aabeaa k8qacaGGGcGaaGzbVpaabmaapaqaa8qacaWGfbGaaiOlaiaaikdaca aI0aaacaGLOaGaayzkaaaaaaaa@63AC@

 

S1F C cogen,nonelec = uto S1F C cogen, uto = S1F C cogen, steam +S1F C cogen,hwater + S1F C cogen,heat E.25 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGUbGaam 4Baiaad6gacaWGLbGaamiBaiaadwgacaWGJbaapaqabaGcpeGaeyyp a0ZaaabeaeaacaWGtbGaaGymaiaadAeacaWGdbWdamaaBaaaleaape Gaam4yaiaad+gacaWGNbGaamyzaiaad6gacaGGSaGaaiiOaiaadwha caWG0bGaam4BaaWdaeqaaaWdbeaacaWG1bGaamiDaiaad+gaaeqani abggHiLdGccqGH9aqpcaGGGcGaam4uaiaaigdacaWGgbGaam4qa8aa daWgaaWcbaWdbiaadogacaWGVbGaam4zaiaadwgacaWGUbGaaiilai aacckacaWGZbGaamiDaiaadwgacaWGHbGaamyBaaWdaeqaaOWdbiab gUcaRiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaWGJb Gaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWGObGaam4Daiaadgga caWG0bGaamyzaiaadkhaa8aabeaak8qacqGHRaWkcaGGGcGaam4uai aaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadogacaWGVbGaam4z aiaadwgacaWGUbGaaiilaiaadIgacaWGLbGaamyyaiaadshaa8aabe aakiaaywW7peWaaeWaa8aabaWdbiaadweacaGGUaGaaGOmaiaaiwda aiaawIcacaGLPaaaaaaaaa@8D8F@

 

First, if a facility reported net sales of these outputs ( sol d uto >purc h uto ) MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4Caiaad+gacaWGSbGaamiza8aadaWgaaWcbaWdbiaadwhacaWG 0bGaam4BaaWdaeqaaOWdbiabg6da+iaadchacaWG1bGaamOCaiaado gacaWGObWdamaaBaaaleaapeGaamyDaiaadshacaWGVbaapaqabaGc peGaaiykaaaa@46F9@ , equations E.26.a and E.27.a applied a ratio of thermal outputs used on-site ( ge n cogen, uto +ge n boiler,uto sol d uto +purc h uto MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4zaiaadwgacaWGUbWdamaaBaaaleaapeGaam4yaiaad+gacaWG NbGaamyzaiaad6gacaGGSaGaaiiOaiaadwhacaWG0bGaam4BaaWdae qaaOWdbiabgUcaRiaadEgacaWGLbGaamOBa8aadaWgaaWcbaWdbiaa dkgacaWGVbGaamyAaiaadYgacaWGLbGaamOCaiaacYcacaWG1bGaam iDaiaad+gaa8aabeaak8qacqGHsislcaWGZbGaam4BaiaadYgacaWG KbWdamaaBaaaleaapeGaamyDaiaadshacaWGVbaapaqabaGcpeGaey 4kaSIaamiCaiaadwhacaWGYbGaam4yaiaadIgapaWaaSbaaSqaa8qa caWG1bGaamiDaiaad+gaa8aabeaaaaa@60E7@  ) to outputs generated on-site ( ge n cogen,uto +ge n boiler,uto MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4zaiaadwgacaWGUbWdamaaBaaaleaapeGaam4yaiaad+gacaWG NbGaamyzaiaad6gacaGGSaGaamyDaiaadshacaWGVbaapaqabaGcpe Gaey4kaSIaam4zaiaadwgacaWGUbWdamaaBaaaleaapeGaamOyaiaa d+gacaWGPbGaamiBaiaadwgacaWGYbGaaiilaiaadwhacaWG0bGaam 4BaaWdaeqaaaaa@4EBD@  ).534F[531] This ratio removes the emissions associated with thermal outputs that were sold from the facility and used instead by third parties. When a facility sells more thermal output than it purchases, no scope 2 emissions are estimated for the quantity of purchased output; the quantity purchased is instead treated as if it were sourced from the facility’s on-site generation of that thermal output. This is consistent with how electricity was treated (using data on net electricity purchases) and with GHG Protocol guidance.535F[532] In addition to adjusting for any net sales of thermal outputs, equations E.26 and E.27 proportionally break out emissions for cogeneration and boiler units based on the relative quantities of each type of thermal output produced from each unit (e.g., ( GE N cogen,uto / Σ uto (GE N cogen,uto ) MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4raiaadweacaWGobWdamaaBaaaleaapeGaam4yaiaad+gacaWG NbGaamyzaiaad6gacaGGSaGaamyDaiaadshacaWGVbaapaqabaGcpe Gaai4laiabfo6at9aadaWgaaWcbaWdbiaadwhacaWG0bGaam4BaaWd aeqaaOWdbiaacIcacaWGhbGaamyraiaad6eapaWaaSbaaSqaa8qaca WGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWG1bGaamiDaiaa d+gaa8aabeaak8qacaGGPaaaaa@532A@  ). Equations E.26 and E.27 are calculated for each of the types of useful thermal output (steam, heat, and hot water). Equation E.28 combines the emissions for each useful thermal output from cogeneration units with the emissions for that output from boiler units.

If sol d uto >purc h uto : MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamysaiaadAgacaGGGcGaam4Caiaad+gacaWGSbGaamiza8aadaWg aaWcbaWdbiaadwhacaWG0bGaam4BaaWdaeqaaOWdbiabg6da+iaadc hacaWG1bGaamOCaiaadogacaWGObWdamaaBaaaleaapeGaamyDaiaa dshacaWGVbaapaqabaGcpeGaaiOoaaaa@49E7@

 

S1F C  cogen, uto =S1F C cogen,nonelec *  ge n cogen, uto +ge n boiler,uto sol d uto +purc h uto ge n cogen,uto +ge n boiler,uto *  ge n cogen,uto Σ uto (ge n cogen,uto )   E.26.a MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqaceaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaGGGcGaam4yaiaad+gacaWGNbGaamyzaiaad6gacaGGSaGaai iOaiaadwhacaWG0bGaam4BaaWdaeqaaOWdbiabg2da9iaadofacaaI XaGaamOraiaadoeapaWaaSbaaSqaa8qacaWGJbGaam4BaiaadEgaca WGLbGaamOBaiaacYcacaWGUbGaam4Baiaad6gacaWGLbGaamiBaiaa dwgacaWGJbaapaqabaGcpeGaaiOkaiaacckadaWcaaWdaeaapeWaae Waa8aabaWdbiaadEgacaWGLbGaamOBa8aadaWgaaWcbaWdbiaadoga caWGVbGaam4zaiaadwgacaWGUbGaaiilaiaacckacaWG1bGaamiDai aad+gaa8aabeaak8qacqGHRaWkcaWGNbGaamyzaiaad6gapaWaaSba aSqaa8qacaWGIbGaam4BaiaadMgacaWGSbGaamyzaiaadkhacaGGSa GaamyDaiaadshacaWGVbaapaqabaGcpeGaeyOeI0Iaam4Caiaad+ga caWGSbGaamiza8aadaWgaaWcbaWdbiaadwhacaWG0bGaam4BaaWdae qaaOWdbiabgUcaRiaadchacaWG1bGaamOCaiaadogacaWGObWdamaa BaaaleaapeGaamyDaiaadshacaWGVbaapaqabaaak8qacaGLOaGaay zkaaaapaqaa8qacaWGNbGaamyzaiaad6gapaWaaSbaaSqaa8qacaWG JbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWG1bGaamiDaiaad+ gaa8aabeaak8qacqGHRaWkcaWGNbGaamyzaiaad6gapaWaaSbaaSqa a8qacaWGIbGaam4BaiaadMgacaWGSbGaamyzaiaadkhacaGGSaGaam yDaiaadshacaWGVbaapaqabaaaaOWaaSbaaSqaaaqabaaakeaapeGa aiOkaiaacckadaWcaaWdaeaapeGaam4zaiaadwgacaWGUbWdamaaBa aaleaapeGaam4yaiaad+gacaWGNbGaamyzaiaad6gacaGGSaGaamyD aiaadshacaWGVbaapaqabaaakeaapeGaeu4Odm1damaaBaaaleaape GaamyDaiaadshacaWGVbaapaqabaGcpeGaaiikaiaadEgacaWGLbGa amOBa8aadaWgaaWcbaWdbiaadogacaWGVbGaam4zaiaadwgacaWGUb GaaiilaiaadwhacaWG0bGaam4BaaWdaeqaaOWdbiaacMcaaaGaaiiO aiaaywW7daqadaWdaeaapeGaamyraiaac6cacaaIYaGaaGOnaiaac6 cacaWGHbaacaGLOaGaayzkaaaaaaaa@C485@

 

Else: MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyraiaadYgacaWGZbGaamyzaiaacQdaaaa@3A68@

 

S1F C  cogen, uto =S1F C cogen,nonelec *  ge n cogen,uto Σ uto (ge n cogen,uto )   E.26.b MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaGGGcGaam4yaiaad+gacaWGNbGaamyzaiaad6gacaGGSaGaai iOaiaadwhacaWG0bGaam4BaaWdaeqaaOWdbiabg2da9iaadofacaaI XaGaamOraiaadoeapaWaaSbaaSqaa8qacaWGJbGaam4BaiaadEgaca WGLbGaamOBaiaacYcacaWGUbGaam4Baiaad6gacaWGLbGaamiBaiaa dwgacaWGJbaapaqabaGcpeGaaiOkaiaacckadaWcaaWdaeaapeGaam 4zaiaadwgacaWGUbWdamaaBaaaleaapeGaam4yaiaad+gacaWGNbGa amyzaiaad6gacaGGSaGaamyDaiaadshacaWGVbaapaqabaaakeaape Gaeu4Odm1damaaBaaaleaapeGaamyDaiaadshacaWGVbaapaqabaGc peGaaiikaiaadEgacaWGLbGaamOBa8aadaWgaaWcbaWdbiaadogaca WGVbGaam4zaiaadwgacaWGUbGaaiilaiaadwhacaWG0bGaam4BaaWd aeqaaOWdbiaacMcaaaGaaiiOaiaaywW7daqadaWdaeaapeGaamyrai aac6cacaaIYaGaaGOnaiaac6cacaWGIbaacaGLOaGaayzkaaaaaaaa @7CC8@

 

 

If sol d uto >purc h uto : MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamysaiaadAgacaGGGcGaam4Caiaad+gacaWGSbGaamiza8aadaWg aaWcbaWdbiaadwhacaWG0bGaam4BaaWdaeqaaOWdbiabg6da+iaadc hacaWG1bGaamOCaiaadogacaWGObWdamaaBaaaleaapeGaamyDaiaa dshacaWGVbaapaqabaGcpeGaaiOoaaaa@49E7@

 

S1F C  boiler, uto =S1F C boiler *  ge n cogen, uto +ge n boiler,uto sol d uto +purc h uto ge n cogen,uto +ge n boiler,uto *  ge n boiler,uto Σ uto (ge n boiler,uto )   E.27.a MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqaceaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaGGGcGaamOyaiaad+gacaWGPbGaamiBaiaadwgacaWGYbGaai ilaiaacckacaWG1bGaamiDaiaad+gaa8aabeaak8qacqGH9aqpcaWG tbGaaGymaiaadAeacaWGdbWdamaaBaaaleaapeGaamOyaiaad+gaca WGPbGaamiBaiaadwgacaWGYbaapaqabaGcpeGaaiOkaiaacckadaWc aaWdaeaapeWaaeWaa8aabaWdbiaadEgacaWGLbGaamOBa8aadaWgaa WcbaWdbiaadogacaWGVbGaam4zaiaadwgacaWGUbGaaiilaiaaccka caWG1bGaamiDaiaad+gaa8aabeaak8qacqGHRaWkcaWGNbGaamyzai aad6gapaWaaSbaaSqaa8qacaWGIbGaam4BaiaadMgacaWGSbGaamyz aiaadkhacaGGSaGaamyDaiaadshacaWGVbaapaqabaGcpeGaeyOeI0 Iaam4Caiaad+gacaWGSbGaamiza8aadaWgaaWcbaWdbiaadwhacaWG 0bGaam4BaaWdaeqaaOWdbiabgUcaRiaadchacaWG1bGaamOCaiaado gacaWGObWdamaaBaaaleaapeGaamyDaiaadshacaWGVbaapaqabaaa k8qacaGLOaGaayzkaaaapaqaa8qacaWGNbGaamyzaiaad6gapaWaaS baaSqaa8qacaWGJbGaam4BaiaadEgacaWGLbGaamOBaiaacYcacaWG 1bGaamiDaiaad+gaa8aabeaak8qacqGHRaWkcaWGNbGaamyzaiaad6 gapaWaaSbaaSqaa8qacaWGIbGaam4BaiaadMgacaWGSbGaamyzaiaa dkhacaGGSaGaamyDaiaadshacaWGVbaapaqabaaaaOWaaSbaaSqaaa qabaaakeaapeGaaiOkaiaacckadaWcaaWdaeaapeGaam4zaiaadwga caWGUbWdamaaBaaaleaapeGaamOyaiaad+gacaWGPbGaamiBaiaadw gacaWGYbGaaiilaiaadwhacaWG0bGaam4BaaWdaeqaaaGcbaWdbiab fo6at9aadaWgaaWcbaWdbiaadwhacaWG0bGaam4BaaWdaeqaaOWdbi aacIcacaWGNbGaamyzaiaad6gapaWaaSbaaSqaa8qacaWGIbGaam4B aiaadMgacaWGSbGaamyzaiaadkhacaGGSaGaamyDaiaadshacaWGVb aapaqabaGcpeGaaiykaaaacaGGGcGaaGzbVpaabmaapaqaa8qacaWG fbGaaiOlaiaaikdacaaI3aGaaiOlaiaadggaaiaawIcacaGLPaaaaa aaaa@C127@

 

Else: S1F C  boiler, uto =S1F C boiler *  ge n boiler,uto Σ uto (ge n boiler,uto )   E.27.b MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadweacaWGSbGaam4CaiaadwgacaGG6aGaaiiO aiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaGGGcGaam Oyaiaad+gacaWGPbGaamiBaiaadwgacaWGYbGaaiilaiaacckacaWG 1bGaamiDaiaad+gaa8aabeaak8qacqGH9aqpcaWGtbGaaGymaiaadA eacaWGdbWdamaaBaaaleaapeGaamOyaiaad+gacaWGPbGaamiBaiaa dwgacaWGYbaapaqabaGcpeGaaiOkaiaacckadaWcaaWdaeaapeGaam 4zaiaadwgacaWGUbWdamaaBaaaleaapeGaamOyaiaad+gacaWGPbGa amiBaiaadwgacaWGYbGaaiilaiaadwhacaWG0bGaam4BaaWdaeqaaa GcbaWdbiabfo6at9aadaWgaaWcbaWdbiaadwhacaWG0bGaam4BaaWd aeqaaOWdbiaacIcacaWGNbGaamyzaiaad6gapaWaaSbaaSqaa8qaca WGIbGaam4BaiaadMgacaWGSbGaamyzaiaadkhacaGGSaGaamyDaiaa dshacaWGVbaapaqabaGcpeGaaiykaaaacaGGGcGaaGzbVpaabmaapa qaa8qacaWGfbGaaiOlaiaaikdacaaI3aGaaiOlaiaadkgaaiaawIca caGLPaaaaaaaaa@7EE9@

 

S1F C uto =S1F C cogen,uto +S1F C boiler,uto   E.28 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWG1bGaamiDaiaad+gaa8aabeaak8qacqGH9aqpcaWGtbGaaG ymaiaadAeacaWGdbWdamaaBaaaleaapeGaam4yaiaad+gacaWGNbGa amyzaiaad6gacaGGSaGaamyDaiaadshacaWGVbaapaqabaGcpeGaey 4kaSIaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadkga caWGVbGaamyAaiaadYgacaWGLbGaamOCaiaacYcacaWG1bGaamiDai aad+gaa8aabeaak8qacaGGGcGaaGzbVpaabmaapaqaa8qacaWGfbGa aiOlaiaaikdacaaI4aaacaGLOaGaayzkaaaaaaaa@5E77@

 

Equation E.29 then allocates the estimates for scope 1 fuel combustion associated with the facility’s generation of steam, heat, and hot water at on-site units ( S1F C uto MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaadwhacaWG 0bGaam4BaaWdaeqaaaaa@3C74@  ) to each of the subprocesses. The allocations for steam, heat, and hot water were reported directly in questions 3.10 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq=Jc9 vqaqpepm0xbba9pwe9Q8fs0=yqaqpepae9pg0FirpepeKkFr0xfr=x fr=xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaqefmuySLMyYL gaiuaajugybabaaaaaaaaapeGaa83eGaaa@3A74@ 3.12 as estimated percentage shares ( useshar e uto,subproc MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaamyDaiaadohacaWGLbGaam4CaiaadIgacaWGHbGaamOCaiaadwga paWaaSbaaSqaa8qacaWG1bGaamiDaiaad+gacaGGSaGaam4Caiaadw hacaWGIbGaamiCaiaadkhacaWGVbGaam4yaaWdaeqaaaaa@4827@  ).536F[533]

S1F C uto,subproc =S1F C uto *useshar e uto,subproc   E.29 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqabeaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWG1bGaamiDaiaad+gacaGGSaGaam4CaiaadwhacaWGIbGaam iCaiaadkhacaWGVbGaam4yaaWdaeqaaOWdbiabg2da9iaadofacaaI XaGaamOraiaadoeapaWaaSbaaSqaa8qacaWG1bGaamiDaiaad+gaa8 aabeaak8qacaGGQaGaamyDaiaadohacaWGLbGaam4CaiaadIgacaWG HbGaamOCaiaadwgapaWaaSbaaSqaa8qacaWG1bGaamiDaiaad+gaca GGSaGaam4CaiaadwhacaWGIbGaamiCaiaadkhacaWGVbGaam4yaaWd aeqaaOWdbiaacckacaaMf8+aaeWaa8aabaWdbiaadweacaGGUaGaaG OmaiaaiMdaaiaawIcacaGLPaaaaaaaaa@65A8@

 

Finally, equation E.30 totals the subprocess-specific estimates for scope 1 fuel combustion emissions (S1F C subproc MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape GaaiikaiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaWG ZbGaamyDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaapaqabaaaaa@40DA@  ) from scope 1 electricity, steam, heat, hot water, and other fuel combustion. For fuel combustion not used in power generation, cogeneration, or boiler units, the subprocess-specific emissions are first totaled across all fuel types ( Σ fuel S1F C fuel,othercom, subproc MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaeu4Odm1damaaBaaaleaapeGaamOzaiaadwhacaWGLbGaamiBaaWd aeqaaOWdbmaabmaapaqaa8qacaWGtbGaaGymaiaadAeacaWGdbWdam aaBaaaleaapeGaamOzaiaadwhacaWGLbGaamiBaiaacYcacaWGVbGa amiDaiaadIgacaWGLbGaamOCaiaadogacaWGVbGaamyBaiaacYcaca GGGcGaam4CaiaadwhacaWGIbGaamiCaiaadkhacaWGVbGaam4yaaWd aeqaaaGcpeGaayjkaiaawMcaaaaa@5575@  ).

S1F C subproc = Σ fuel S1F C fuel,othercom, subproc +S1F C elec,subproc +S1F C steam,subproc + S1F C heat,subproc +S1F C hwater,subproc   E.30 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaauaabeqaceaaae aaqaaaaaaaaaWdbiaadofacaaIXaGaamOraiaadoeapaWaaSbaaSqa a8qacaWGZbGaamyDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaapa qabaGcpeGaeyypa0Jaeu4Odm1damaaBaaaleaapeGaamOzaiaadwha caWGLbGaamiBaaWdaeqaaOWdbmaabmaapaqaa8qacaWGtbGaaGymai aadAeacaWGdbWdamaaBaaaleaapeGaamOzaiaadwhacaWGLbGaamiB aiaacYcacaWGVbGaamiDaiaadIgacaWGLbGaamOCaiaadogacaWGVb GaamyBaiaacYcacaGGGcGaam4CaiaadwhacaWGIbGaamiCaiaadkha caWGVbGaam4yaaWdaeqaaaGcpeGaayjkaiaawMcaaiabgUcaRiaado facaaIXaGaamOraiaadoeapaWaaSbaaSqaa8qacaWGLbGaamiBaiaa dwgacaWGJbGaaiilaiaadohacaWG1bGaamOyaiaadchacaWGYbGaam 4Baiaadogaa8aabeaak8qacqGHRaWkcaWGtbGaaGymaiaadAeacaWG dbWdamaaBaaaleaapeGaam4CaiaadshacaWGLbGaamyyaiaad2gaca GGSaGaam4CaiaadwhacaWGIbGaamiCaiaadkhacaWGVbGaam4yaaWd aeqaaaGcbaWdbiabgUcaRiaacckacaWGtbGaaGymaiaadAeacaWGdb WdamaaBaaaleaapeGaamiAaiaadwgacaWGHbGaamiDaiaacYcacaWG ZbGaamyDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaapaqabaGcpe Gaey4kaSIaam4uaiaaigdacaWGgbGaam4qa8aadaWgaaWcbaWdbiaa dIgacaWG3bGaamyyaiaadshacaWGLbGaamOCaiaacYcacaWGZbGaam yDaiaadkgacaWGWbGaamOCaiaad+gacaWGJbaapaqabaGcpeGaaiiO aiaaywW7daqadaWdaeaapeGaamyraiaac6cacaaIZaGaaGimaaGaay jkaiaawMcaaaaaaaa@AA27@

 

From this point in the calculations, the allocation of any emissions from ambient heating and the aggregation of subprocesses to unit process emissions for scope 1 fuel combustion follow the same steps as with simpler facilities (equations E.11 MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVu0Je9sqqrpepC0xbbL8F4rqqrFfpeea0xe9Lq=Jc9 vqaqpepm0xbba9pwe9Q8fs0=yqaqpepae9pg0FirpepeKkFr0xfr=x fr=xb9adbaqaaeGaciGaaiaabeqaamaabaabaaGcbaqefmuySLMyYL gaiuaajugybabaaaaaaaaapeGaa83eGaaa@3A74@ E.13). These final steps yield scope 1 fuel combustion unit process emissions ( S1FCUGH G product ) MathType@MTEF@5@5@+= feaahGart1ev3aqatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn hiov2DGi1BTfMBaeXatLxBI9gBaerbd9wDYLwzYbItLDharqqtubsr 4rNCHbGeaGqiVCI8FfYJH8YrFfeuY=Hhbbf9v8qqaqFr0xc9pk0xbb a9q8WqFfeaY=biLkVcLq=JHqpepeea0=as0Fb9pgeaYRXxe9vr0=vr 0=vqpWqaaeaabiGaciaacaqabeaadaqaaqaaaOqaaabaaaaaaaaape Gaam4uaiaaigdacaWGgbGaam4qaiaadwfacaWGhbGaamisaiaadEea paWaaSbaaSqaa8qacaWGWbGaamOCaiaad+gacaWGKbGaamyDaiaado gacaWG0baapaqabaGcpeGaaiykaaaa@4437@  for the product-level emissions inventories.



[529] Subject matter expert, interview by USITC staff, August 24, 2023.

[530] Variables ORISPL and ELCALLOC. EPA, “PLNT22,” January 30, 2024.

[531] Question 3.3 collected data on the quantities of thermal outputs generated from cogeneration and boiler units. Questions 3.4c-e and 3.3b collected data on sales and purchases of thermal outputs, respectively.

[532] WRI, GHG Protocol Scope 2 Guidance, 2015, 41. For a comparison of the GHG Protocol guidance and other methods, see “Other Standards Informing the Commission’s Methodology Development.”

[533] Use of steam, heat, and hot water is less common at U.S. facilities making covered steel and aluminum products than use of fuel combustion and electricity. While subprocess-specific data for fuel combustion and electricity was collected in absolute quantities to support data validation work, useful thermal output data collection was simplified to percentages to reduce burden and manage the complexity of the questionnaire’s programming.