Facility Name:BASF CORP - GEISMAR SITE
Facility Identifier:
Facility Reporting Year:2020
Facility Location:
Address: 8404 River Road
City: Geismar
State: LA
Postal Code: 70734

Facility Site Details:
CO2 equivalent emissions from facility subparts C-II, SS, and TT (metric tons):733,545.6
CO2 equivalent emissions from supplier subparts LL-QQ (metric tons):
Biogenic CO2 emissions from facility subparts C-II, SS, and TT (metric tons):0
Cogeneration Unit Emissions Indicator:N
GHG Report Start Date:2020-01-01
GHG Report End Date:2020-12-31
Description of Changes to Calculation Methodology:
Plant Code Indicator:N
Primary NAICS Code:325199
Second Primary NAICS Code:
Additional NAICS Codes: 221330
Parent Company Details:
Parent Company Name:BASF CORP
Address:100 Campus Drive, Florham Park,  NJ 07932
Percent Ownership Interest:100

Subpart C: General Stationary Fuel Combustion

Gas Information Details

Gas NameCarbon Dioxide
Gas Quantity641,572.8 (Metric Tons)
Own Result?

Gas NameBiogenic Carbon dioxide
Gas Quantity0 (Metric Tons)
Own Result?

Gas NameMethane
Gas Quantity41.6 (Metric Tons)
Own Result?

Gas NameNitrous Oxide
Gas Quantity7.273 (Metric Tons)
Own Result?

Unit Details:
Unit Name : EQT0367
Unit Type : OB (Boiler, other)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 4.92 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
644.2 (Metric Tons) 0.01 (Metric Tons) 0.001 (Metric Tons) 0.30 (Metric Tons) 0.362 (Metric Tons)


Unit Name : EQT0368
Unit Type : TODF (Thermal oxidizer, direct fired, no heat recovery)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 1.29 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
95.5 (Metric Tons) 0.00 (Metric Tons) 0.000 (Metric Tons) 0.05 (Metric Tons) 0.054 (Metric Tons)


Unit Name : 12-90
Unit Type : ICI (Incinerator, commercial and industrial)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 1.29 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
1532.9 (Metric Tons) 0.03 (Metric Tons) 0.003 (Metric Tons) 0.72 (Metric Tons) 0.861 (Metric Tons)


Unit Name : EQT0310
Unit Type : OB (Boiler, other)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 285.3 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
30534.7 (Metric Tons) 0.58 (Metric Tons) 0.058 (Metric Tons) 14.39 (Metric Tons) 17.149 (Metric Tons)


Unit Name : EQT0311
Unit Type : OB (Boiler, other)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 285.3 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
25034.6 (Metric Tons) 0.47 (Metric Tons) 0.047 (Metric Tons) 11.80 (Metric Tons) 14.060 (Metric Tons)


Fuel : Fuel Gas
Tier Name : Tier 3 (Equation C-5, gaseous fuel)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
7332.1 (Metric Tons) 2.56 (Metric Tons) 0.512 (Metric Tons) 63.97 (Metric Tons) 152.499 (Metric Tons)

Equation C5/C8 Inputs :
Fuel Quantity : 614483062.5 ()
Use Default High Heat Value : false
High Heat Value : 0.001388 ()
Equation C2b Inputs :
Fuel CombustedMolecular WeightCarbon Content
January46822062.5 ()11.49492 ()0.38744 ()
February61483750 ()9.651031 ()0.374115 ()
March9130125 ()13.646082 ()0.414354 ()
April125046375 ()12.502329 ()0.399907 ()
May50681875 ()7.426718 ()0.295943 ()
June1242250 ()6.162665 ()0.288251 ()
July26371125 ()5.513695 ()0.373006 ()
August60936500 ()7.527664 ()0.394501 ()
September113496875 ()6.107042 ()0.278355 ()
October53489875 ()5.807477 ()0.279712 ()
November27949250 ()5.063649 ()0.215036 ()
December37833000 ()4.589244 ()0.181819 ()

Carbon Content Substitute Data Information :
Total number of valid carbon content determinations : 346
Total number of carbon content substitute data values : 18
Frequency of carbon content determinations : Hourly
Total number of operating hours in the reporting year for which missing data substitution was used for fuel usage : 0

Molecular Weight Information :
Total number of valid molecular weight determinations : 346
Total number of molecular weight substitute data values : 18
Frequency of molecular weight determinations : Hourly
Molar Volume Constant (MVC) used : 849.5 (scf/kg-mole)

Unit Name : EQT161
Unit Type : OB (Boiler, other)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 285.3 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
38346.7 (Metric Tons) 0.72 (Metric Tons) 0.072 (Metric Tons) 18.07 (Metric Tons) 21.537 (Metric Tons)


Fuel : Fuel Gas
Tier Name : Tier 3 (Equation C-5, gaseous fuel)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
10274.4 (Metric Tons) 3.33 (Metric Tons) 0.665 (Metric Tons) 83.15 (Metric Tons) 198.220 (Metric Tons)

Equation C5/C8 Inputs :
Fuel Quantity : 798712250 ()
Use Default High Heat Value : false
High Heat Value : 0.001388 ()
Equation C2b Inputs :
Fuel CombustedMolecular WeightCarbon Content
January117381750 ()11.49492 ()0.38744 ()
February81034500 ()9.651031 ()0.374115 ()
March46491000 ()13.646082 ()0.414354 ()
April145121250 ()12.502329 ()0.399907 ()
May51325000 ()7.426718 ()0.295943 ()
June0 ()6.162665 ()0.288251 ()
July0 ()5.513695 ()0.373006 ()
August65096250 ()7.527664 ()0.394501 ()
September131110750 ()6.107042 ()0.278355 ()
October68744250 ()5.807477 ()0.279712 ()
November43515500 ()5.063649 ()0.215036 ()
December48892000 ()4.589244 ()0.181819 ()

Carbon Content Substitute Data Information :
Total number of valid carbon content determinations : 346
Total number of carbon content substitute data values : 18
Frequency of carbon content determinations : Hourly
Total number of operating hours in the reporting year for which missing data substitution was used for fuel usage : 0

Molecular Weight Information :
Total number of valid molecular weight determinations : 346
Total number of molecular weight substitute data values : 18
Frequency of molecular weight determinations : Hourly
Molar Volume Constant (MVC) used : 849.5 (scf/kg-mole)

Unit Name : EQT162
Unit Type : OB (Boiler, other)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 311.85 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
44769.4 (Metric Tons) 0.84 (Metric Tons) 0.084 (Metric Tons) 21.09 (Metric Tons) 25.144 (Metric Tons)


Unit Name : EQT0317
Unit Type : CCCT (CC (Turbine, combined cycle))
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 450 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
200870.3 (Metric Tons) 3.79 (Metric Tons) 0.379 (Metric Tons) 94.64 (Metric Tons) 112.814 (Metric Tons)


Unit Name : EQT0318
Unit Type : CCCT (CC (Turbine, combined cycle))
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 923 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
180470.4 (Metric Tons) 3.40 (Metric Tons) 0.340 (Metric Tons) 85.03 (Metric Tons) 101.357 (Metric Tons)


Fuel : Fuel Gas
Tier Name : Tier 3 (Equation C-5, gaseous fuel)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
68737.8 (Metric Tons) 25.25 (Metric Tons) 5.050 (Metric Tons) 631.31 (Metric Tons) 1505.047 (Metric Tons)

Equation C5/C8 Inputs :
Fuel Quantity : 6064473750.0 ()
Use Default High Heat Value : false
High Heat Value : 0.001388 ()
Equation C2b Inputs :
Fuel CombustedMolecular WeightCarbon Content
January724943500 ()11.49492 ()0.38744 ()
February500568000 ()9.651031 ()0.374115 ()
March572533000 ()13.646082 ()0.414354 ()
April555603000 ()12.502329 ()0.399907 ()
May612826500 ()7.426718 ()0.295943 ()
June10779000 ()6.162665 ()0.288251 ()
July10951000 ()5.513695 ()0.373006 ()
August461858000 ()7.527664 ()0.394501 ()
September846837000 ()6.107042 ()0.278355 ()
October510417687.5 ()5.807477 ()0.279712 ()
November521214187.5 ()5.063649 ()0.215036 ()
December735942875 ()4.589244 ()0.181819 ()

Carbon Content Substitute Data Information :
Total number of valid carbon content determinations : 346
Total number of carbon content substitute data values : 18
Frequency of carbon content determinations : Hourly
Total number of operating hours in the reporting year for which missing data substitution was used for fuel usage : 0

Molecular Weight Information :
Total number of valid molecular weight determinations : 346
Total number of molecular weight substitute data values : 18
Frequency of molecular weight determinations : Hourly
Molar Volume Constant (MVC) used : 849.5 (scf/kg-mole)

Unit Name : EQT0078
Unit Type : PRH (Process Heater)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 5.13 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
905.5 (Metric Tons) 0.02 (Metric Tons) 0.002 (Metric Tons) 0.43 (Metric Tons) 0.509 (Metric Tons)


Unit Name : 06-97
Unit Type : TODF (Thermal oxidizer, direct fired, no heat recovery)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 18.7 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
3965.1 (Metric Tons) 0.07 (Metric Tons) 0.007 (Metric Tons) 1.87 (Metric Tons) 2.227 (Metric Tons)


Unit Name : EQT457
Unit Type : TODF (Thermal oxidizer, direct fired, no heat recovery)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 9.32 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
2294.3 (Metric Tons) 0.04 (Metric Tons) 0.004 (Metric Tons) 1.08 (Metric Tons) 1.289 (Metric Tons)


Unit Name : EQT0325
Unit Type : TODF (Thermal oxidizer, direct fired, no heat recovery)
Unit Description :
Individual Unit Details:
Use Ivt Indicator: Y
Maximum Rated Heat Input Capacity: 6.38 N (mmBtu/hr)

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
1060.9 (Metric Tons) 0.02 (Metric Tons) 0.002 (Metric Tons) 0.50 (Metric Tons) 0.596 (Metric Tons)


Unit Name : GP-2
Unit Type : OCS (Other combustion source)
Unit Description :
Other Unit Name :
Small Unit Aggregation Details:
Use Ivt Indicator: Y
Highest Maximum Rated Heat Input Capacity: 16.5 N
Cumulative Maximum Rated Heat Input Capacity: 99

Emission Details:
Annual Biogenic CO2 Emissions: 0 (metric tons)
Annual Fossil fuel based CO2 Emissions: 24704.0 (metric tons)

Tier Fuel Details:
Fuel : Natural Gas (Weighted U.S. Average)
Tier Name : Tier 2 (Equation C-2a)
Tier Methodology Start Date : 2020-01-01
Tier Methodology End Date : 2020-12-31
Frequency of HHV determinations : Monthly

Tier 2 Monthly HHV Details :
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
N N N N N N N N N N N N

Fuel Emission Details :
Total CO2 emissionsTotal CH4 emissionsTotal N2O emissionsTotal CH4 emissions CO2eTotal N2O emissions CO2e
24704.0 (Metric Tons) 0.47 (Metric Tons) 0.047 (Metric Tons) 11.64 (Metric Tons) 13.874 (Metric Tons)



Subpart X: Petrochemical Production


CEMS Monitoring Location (CML) Details for Subpart X

Gas Information Details

Gas NameCarbon Dioxide
Gas Quantity88,765.4 (Metric Tons)
Own Result?

Gas NameBiogenic Carbon dioxide
Gas Quantity0 (Metric Tons)
Own Result?

Gas NameMethane
Gas Quantity0 (Metric Tons)
Own Result?

Gas NameNitrous Oxide
Gas Quantity0 (Metric Tons)
Own Result?


Petrochemical Process Units

Petrochemical process units monitored using the mass balance methodology:

Name or ID:EO3
Description:
Type:Petrochemical process unit
Identify combustion units:None
AnnualCO2Emissions:88765.4 Metric Tons
Type of petrochemical produced:
Annual quantity of the petrochemical produced: 
Annual average carbon content of the wastewater: 
Annual average flow of wastewater:
Unit of measure for average flow of wastewater:
Annual mass of carbon released in fugitive emissions not controlled with a combustion device: 
Annual mass of carbon released in process vents not controlled with a combustion device: 

Feedstocks/Products:

Type:
State of Feedstock or product:
Identify each method (i.e., method number, title or other description) used to determine the flow or mass of each carbon-containing product or feedstock: Manufacturer Recommendation
Annual quantity of feedstock or product: 
If applicable, dates for each process change that reduced the composition to less than 99.5%:
MonthVolume for month based on missing data procedureVolume measurement methodOther volume measurement methodCarbon content or composition for month based on missing data procedureCarbon content or composition determination methodSpecify the practiceOther MethodName or title of the alternative carbon content determination methodExplanation as to why an alternative carbon content determination method was neededFile name of the copy of the alternative carbon content determination methodMolecular weight for month based on missing data procedure, if applicableMolecular weight determination method, if applicableOther methodName or title of the alternative molecular weight determination methodExplanation as to why an alternative molecular weight determination method was neededFile name of the copy of the alternative molecular weight determination methodTemperature at which volume was measured
January N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
February N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
March N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
April N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
May N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
June N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
July N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
August N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
September N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
October N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
November N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
December N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit

Type:
State of Feedstock or product:
Identify each method (i.e., method number, title or other description) used to determine the flow or mass of each carbon-containing product or feedstock: Manufacturer Recommendation
Annual quantity of feedstock or product: 
If applicable, dates for each process change that reduced the composition to less than 99.5%:
MonthVolume for month based on missing data procedureVolume measurement methodOther volume measurement methodCarbon content or composition for month based on missing data procedureCarbon content or composition determination methodSpecify the practiceOther MethodName or title of the alternative carbon content determination methodExplanation as to why an alternative carbon content determination method was neededFile name of the copy of the alternative carbon content determination methodMolecular weight for month based on missing data procedure, if applicableMolecular weight determination method, if applicableOther methodName or title of the alternative molecular weight determination methodExplanation as to why an alternative molecular weight determination method was neededFile name of the copy of the alternative molecular weight determination methodTemperature at which volume was measured
January N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-92 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
February N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-93 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9368 degrees Fahrenheit
March N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-94 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9468 degrees Fahrenheit
April N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-95 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9568 degrees Fahrenheit
May N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-96 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9668 degrees Fahrenheit
June N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-97 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9768 degrees Fahrenheit
July N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-98 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9868 degrees Fahrenheit
August N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-99 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9968 degrees Fahrenheit
September N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-100 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9968 degrees Fahrenheit
October N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-101 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9968 degrees Fahrenheit
November N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-102 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9968 degrees Fahrenheit
December N Flow meter N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-103 N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9968 degrees Fahrenheit

Type:
State of Feedstock or product:
Identify each method (i.e., method number, title or other description) used to determine the flow or mass of each carbon-containing product or feedstock: Manufacturer Recommendation
Annual quantity of feedstock or product: 
If applicable, dates for each process change that reduced the composition to less than 99.5%:
MonthVolume for month based on missing data procedureVolume measurement methodOther volume measurement methodCarbon content or composition for month based on missing data procedureCarbon content or composition determination methodSpecify the practiceOther MethodName or title of the alternative carbon content determination methodExplanation as to why an alternative carbon content determination method was neededFile name of the copy of the alternative carbon content determination methodMolecular weight for month based on missing data procedure, if applicableMolecular weight determination method, if applicableOther methodName or title of the alternative molecular weight determination methodExplanation as to why an alternative molecular weight determination method was neededFile name of the copy of the alternative molecular weight determination methodTemperature at which volume was measured
January N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
February N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
March N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
April N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
May N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
June N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
July N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
August N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
September N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
October N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
November N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit
December N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method N Other (specify)Standard Test Method for Relative Molecular Mass (Relative Molecular Weight) of Hydrocarbons by Thermoelectric Measurement of Vapor Pressure - ASTM D2503-9268 degrees Fahrenheit

Type:
State of Feedstock or product:
Identify each method (i.e., method number, title or other description) used to determine the flow or mass of each carbon-containing product or feedstock: Manufacturer Recommendation
Annual quantity of feedstock or product: 
If applicable, dates for each process change that reduced the composition to less than 99.5%:
MonthVolume for month based on missing data procedureVolume measurement methodOther volume measurement methodCarbon content or composition for month based on missing data procedureCarbon content or composition determination methodSpecify the practiceOther MethodName or title of the alternative carbon content determination methodExplanation as to why an alternative carbon content determination method was neededFile name of the copy of the alternative carbon content determination methodMolecular weight for month based on missing data procedure, if applicableMolecular weight determination method, if applicableOther methodName or title of the alternative molecular weight determination methodExplanation as to why an alternative molecular weight determination method was neededFile name of the copy of the alternative molecular weight determination methodTemperature at which volume was measured
January N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
February N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
March N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
April N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
May N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
June N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
July N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
August N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
September N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
October N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
November N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit
December N Flow meter N Other (specify)ASTM D3238-95 - Standard Test Method for Calculation of Carbon Distribution and Structural Group Analysis of Petroleum Oils by the n-d-M Method68 degrees Fahrenheit

Type:
State of Feedstock or product:
Identify each method (i.e., method number, title or other description) used to determine the flow or mass of each carbon-containing product or feedstock: Manufacturer Recommendation
Annual quantity of feedstock or product: 
If applicable, dates for each process change that reduced the composition to less than 99.5%:
MonthVolume for month based on missing data procedureVolume measurement methodOther volume measurement methodCarbon content or composition for month based on missing data procedureCarbon content or composition determination methodSpecify the practiceOther MethodName or title of the alternative carbon content determination methodExplanation as to why an alternative carbon content determination method was neededFile name of the copy of the alternative carbon content determination methodMolecular weight for month based on missing data procedure, if applicableMolecular weight determination method, if applicableOther methodName or title of the alternative molecular weight determination methodExplanation as to why an alternative molecular weight determination method was neededFile name of the copy of the alternative molecular weight determination methodTemperature at which volume was measured
January N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
February N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
March N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
April N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
May N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
June N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
July N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
August N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
September N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
October N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
November N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit
December N Flow meter N Other (specify)Calculated based on chemical formula and atomic weights68 degrees Fahrenheit