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' (!       ,  ` , ,  , @ @ , @ @ ,   @ @  @ @   ` , @ @ *  @ + @ @ +  ,  ,  ` ,  ` ,  `` ,  (    #@* !@* +  @ +  @ +  @  @ @  @ @   @,    @@ (   @ (    "*   "+  "   "  @@,  @,  ` @,  @,  @,   @,   `@ ,     @ @   @ @ @ @ @ @ @@  @@ @ @ @ @ @ @ @ @ @ @ $@ @ %@ @ @ @ @ @ @ @ @ @  .  !  %U@ @  U @  U @  PU @ % @    P %P@  P  P  PP  Q  1   1  @@,  @, 1 @,  ` @, @,  1 ` ,  1  , 1, 1, , ,  `@ ,  ` , 1 ` ,  `` ,     P  R @  PR @  UU@ @    1   1    @     +    ( (  #     (   ( @@  @ @  @ @@ @  @ (   (%@ @ (%P@  %@@  %@  P% @ U@@ U@ PU @ @ @  @  @  1,Milliers [0]_Annex_comb_guideline_version4-2-(Milliers_Annex_comb_guideline_version4-2+&Montaire [0]_Annex comb guideline 4-7.)Montaire_Annex_comb_guideline_version4-2 Source Hed Source Text Title-1 Title-2`fUser agreementn Instructions&Electricity Indirect Emissions }EFs_Electricity_US_StateEFs_Electricity_Country/Conversion FactorsACOMMONCLIMATEGHG_m&rEvaluation_Road Test DraftRevised ToolsFinal VersionsMobileFinalFinal(after KPMG-MichaelG Review)NextFinalMOBILE_FinalWorksheet(10.25).xlsHome IntroductionEmissions based on fuel useEmissions based on distance ReferenceFAQMacrosYYYYY@Z1@vU@M7AP@>W[?P@Z1@k?{X5M-@>W[?B@Z1@HcY ?f{@>W[?Woo.@Z1@y?|ќ[ @>W[?:@Z1 @vU?M7AP@>W[?P@Z1"@d/?N@>W[?Jt@Z1$@k?{X5M-@>W[?B@Z1&@ :?X;@>W[?u@Z1(@HcY ?f{@>W[?Woo.}@Z1*@ 1?Ւ@>W[?Pz@Z1,@y?|ќ[ @>W[?:y@Z1.@EӵGW[?FyXXw@Z10@vU?M7AP@>W[?Pu@Z11@F?Hp[@>W[?k![?t@Z12@d/?N@>W[?Jts@Z13@T ._?}@>W[?)6+nr@Z14@k?{X5M-|@>W[?Bq@Z15@Lz?PѠz@>W[?VѬp@Z16@ :?X;y@>W[?uo@Z17@$?ox@>W[?1CW[?Woo.m@Z19@0"?*v@>W[?؝l@Z1:@ 1?Ւu@>W[?Pj@Z1;@۱t?l_?/t@>W[?ܛbi@Z1<@y?|ќ[ t@>W[?:i@Z1=@ U?Lհns@>W[? m&h@Z1>@EӵGW[?FyXXg@Z1?@3n?I"3-r@>W[?>MϏf@Z1@@vU?M7APq@>W[?Pe@Z1@@vb|?'q@>W[?o( 9e@Z1A@F?Hp[p@>W[?k![?d@Z1A@".|? p@>W[?g6Qd@Z1B@d/?No@>W[?Jtc@Z1B@UQ1?ë)vn@>W[?w3ׯb@Z1C@T ._?m@>W[?)6+nb@Z1C@fЗ?Bl@>W[?5X0a@Z1D@k?{X5M-l@>W[?Ba@Z1D@(C&?^}k@>W[?q.a@Z1E@Lz?PѠj@>W[?VѬ`@Z1E@a\?7^I 6j@>W[?PeI`@Z1F@ :?X;i@>W[?u_@Z1F@o?m\ i@>W[?T~v _@Z1G@$?oh@>W[?1CW[?[a]@Z1H@HcY ?f{g@>W[?Woo.]@Z1H@A6?!]hg@>W[?o\@Z1I@0"?*f@>W[?؝\@Z1I@q]pE?`@}f@>W[?,$v[@Z1J@ 1?Ւe@>W[?PZ@Z1J@2@?G#ODe@>W[?8|mZ@Z1K@۱t?l_?/d@>W[?ܛbY@Z1K@zB?)c ~d@>W[?sĦwY@Z1L@y?|ќ[ d@>W[?:Y@Z1L@8t??TNc@>W[?#HX@Z1M@ U?Lհnc@>W[? m&X@Z1M@ewf1?>_c@>W[?#W@Z1N@EӵGW[?FyXXW@Z1N@k?zzb@>W[?_V@Z1O@3n?I"3-b@>W[?>MϏV@Z1O@sQ?da@>W[?sW[?PU@Z1@P@L `}?oVa@>W[?~ ͠U@Z1P@vb|?'a@>W[?o( 9U@Z1P@;9?Dr`@>W[?8T@YY' get_gasgperkm;T Step 1Step 3ABDEFCO2 emission factor Step 2CkWh4should be reported in scope 2 as indirect emissions.%Indirect CO2 emissions in metric tons Total Area of the Building%Total Area of the Office Organization lbs CO2 G D = A*(C/B)Indirect CO2 emissions in lbs Location 1 Location 2 Location 3 Location 4 Location 5 Location 6 Location 7 Location 8 Location 9 Location 10 Location 11 Location 12'Annual Electricity Used in the Building2Annual Electricity Used by the Office Organization1US Average Electricity Emissions Factors by StateStateAlabamaMontanaAlaskaNebraskaArizonaNevadaArkansas New Hampshire California New JerseyColorado New Mexico ConnecticutNew YorkDelawareNorth CarolinaFlorida North DakotaGeorgiaOhioHawaiiOklahomaIdahoOregonIllinois PennsylvaniaIndiana Rhode IslandIowaSouth CarolinaKansas South DakotaKentucky Tennessee LouisianaTexasMaineUtahMaryland (inc. DC)Vermont MassachusettsVirginiaMichigan Washington Minnesota West Virginia Mississippi WisconsinMissouriWyomingzSource: US Department of Energy, Revised/Updated State-level GHG Emissions Factors for Electricity Generation, April 2002.:ftp://ftp.eia.doe.gov/pub/oiaf/1605/cdrom/pdf/e-supdoc.pdf lbs CO2/kWh+Country Level Electricity Emissions FactorsGasCoalOil AustraliaAustriaBelgiumCanadaDenmarkFinlandFranceGermanyGreeceIcelandIrelandItalyJapan Luxembourg Netherlands New ZealandNorwayPortugalSpainSweden SwitzerlandTurkeyUnited Kingdom United States ArgentinaIndiaBrazilMexicoChilePakistanChinaPeruColumbia SingaporeEcuador Venezuela2All Fuels: Electricity emissions in grams CO2/kWh-.UnitStep 4: Sum CO2 emissions:HG = D*E H = G/2205metric tons CO2 6Note: The emissions associated with use of electricity.Indirect CO2 Emissions from Use Of Electricity  @Calculation steps for worksheet 'Electricity Indirect Emissions'Conversion FactorsMass 1 pound (lb)453.6 grams (g)0.4536 kilograms (kg)0.0004536 metric tons (tonne)1 kilogram (kg)2.205 pounds (lb)1 short ton (ton)2'000 pounds (lb)907.2 kilograms (kg) 1 metric ton2'205 pounds (lb)1'000 kilograms (kg)1.1205 short tons (tons)Volume0.1781 barrel (bbl)28.32 liters (L)0.0238 barrel (bbl)3.785 liters (L)1 barrel (bbl)158.99 liters (L) 1 litre (L)6.2897 barrels (bbl)1'000 liters (L)Energy1 kilowatt hour (kWh)3412 Btu (btu)3'600 kilojoules (KJ)1 megajoule (MJ)0.001 gigajoules (GJ)1 gigajoule (GJ) 0.9478 million Btu (million btu)277.8 kilowatt hours (kWh) 1 Btu (btu)1'055 joules (J)1 million Btu (million btu)1.055 gigajoules (GJ)293 kilowatt hours (kWh)1 therm (therm) 100'000 btu 0.1055 gigajoules (GJ)29.3 kilowatt hours (kWh)Otherkilo1'000mega 1'000'000giga 1'000'000'000tera1'000'000'000'0001 psi 14.5037 bar 1.0197 bar1 atmosphere (atm) 0.9869 bar101.325 kilo pascals$14.696 pounds per square inch (psia)1 mile (statue)1.609 kilometers1 metric ton carbon1 cubic foot (ft 3)0.02832 cubic meters (m 3)0.003785 cubic meters (m 3)0.1589 cubic meters (m 3)0.001 cubic meters (m 3)1 cubic meter (m 3)1 kgf / cm 3 (tech atm)  1 metric ton CH421 metric tons CO2 equivalent1metric ton N2O310 metric tons CO2 equivalent3.664 metric tons CO2%CO2 Emissions from Use of Electricity Color Key:Standard LabelUser entry cellsAutomatic calculationYear:This workbook will enable you to calculate your office's indirect emissions from the use of electricity. The workbook contains the following worksheets:Step 4. All values obtained in column H are automatically added. These emissions should be reported as indirect emissions under Scope 2 of the GHG Protocol. i Step 1.Enter annual electricity used by your office building in Column A. Make sure the units you use are consistent with the emissions factor unit you will enter in Step 2. Conversion factors are available in the worksheet 'Conversion Factors'. If you have more than one office location, enter data separately for each location. If you do not occupy the whole building and your space is not separately metered, enter the following additional information to estimate your electricity use: i) In Column B, enter total area of the building ii) In Column C, enter total area occupied by your organization Column D automatically calculates the approximate kWh of electricity attributable to your organization using the following formula: (area of organization s space total building area) total building usage of electricity = approximate kWh used by your organizationStep 3. CO2 emissions in pounds are automatically calculated in Column G. CO2 emissions in metric tons are automatically calculated in Column H. N ONote: Example data is provided in the worksheets to illustrate the application of the calculation methods used in these worksheets. Remember to remove the examples before you begin your own calculations but be careful not to remove any formulas from the grey shaded cells. Each worksheet is color coded to help illustrate which cells require input from you. A key to the color coding is at the top of each worksheet.:To calculate indirect CO2 emissions from electricity, you need to determine the quantity of electricity used in your office organization, and the appropriate electricity emissions factor. Follow the steps below. Note that columns A, B, C, etc. refer to the columns in the calculation tool, not to Excel columns. P- Electricity Indirect Emissions. This is the emisisons calculation spreadsheet" i- EFs_Electricity_State. This spreadsheet provides state level emissions factors for use of electricity."m- EFs_Electricity_Country. This spreadsheet provides select country level emissions factors for electricity."Y- Conversion Factors. This spreadsheet contains a chart for performing unit conversions."x Step 2.Enter the appropriate CO2 emissions factor in Column E in pounds of CO2 per unit of activity data. Ideally, use an emissions factor that is specific to your electric utility. You may be able to obtain this directly from your electricity provider. In the US, emissions factors for power plants around the country can also be found on the US EPA's EGRID database (http://www.epa.gov/ai<rmarkets/egrid). If you cannot find an emissions factor for your utility, a list of US state level electricity emission factors can be found in the worksheet 'EF_Electricity_US_State . Select country level emissions factors can be found in the worksheet 'EF_Electricity_Country'. These emissions factors are less accurate than using one specific to your utility. Specify the emissions factor unit in column F, ensuring that it is consistent with the activity data unit you entered in Step 1. ! "O P)BNote: Grey colored cells are protected to prevent formulas being inadvertently deleted. To unprotect the worksheet, select Protection from the Tools menu followed by Unprotect Sheet. No password is required. 7.4805 US gallons (gal)1 US gallon (gal)42 US gallons (gal)0.2642 US gallons (gal)264.2 US gallons (gal) lbs CO2/ kWh #From lbs to metric tons, divide by Annex I CountryNon- Annex I Country-FThese worksheets are intended to be used in conjunction with Working 9 to 5 on Climate Change: An Office Guide. This publication will help you understand the difference betwen direct and indirect emissions and the concept of "Scope". Refer to 9 to 5 for detailed guidance on measuring and reporting emissions from an office.="n"-Electricity emissions in grams CO2/kWh (2000)!"Source: International Energy Agency 2002, CO2 Emissions from Fuel Combustion. http://www.iea.org/stats/files/co2.htm Note: Data are for year 2000.>User Agreement By using the Spreadsheets and associated materials in any manner, the User agrees to the following terms of this agreement: Copyright: The Spreadsheets and associated guidance were developed by WRI, and are copyrighted. The User acknowledges these copyrights. Acknowledgement: The User agrees to acknowledge WRI for its role in developing the Spreadsheets whenever the User authors reports or publications based in whole or in part on the use of the Spreadsheets. Disclaimer: The use of these tools is not a guarantee of an accurate or complete greenhouse gas emissions inventory. To develop a high quality inventory, it is essential to plan an inventory quality system that includes suitable internal and external reviews, and accuracy checks for activity data, emissions factors, and emissions calculations.*Organization Name All Fuels * * CO2 emissions from fossil fuels consumed for electricity, combined heat and power and district heating divided by output of electricity and heat generated from fossil fuels, nuclear, hydro (excluding pumped storage), geothermal, solar and biomass. Both public and autoproducers have been included in the calculation of the emissions. Due to data problems, emissions per kWh may vary significantly from one year to the next. In addition, total emissions per kWh will vary depending on the generation mix of a given year.Source: Personal communication, IEA, 2002. Both public and autoproducers have been included in the calculation of the emissions. Please note that the values given reflect a 3-year average of 1998, 1999, and 2000. Due to data problems, emissions per kWh may vary significantly from one year to the next. In addition, total emissions per kWh will vary depending on the generation mix of a given year. These emissions factors are not considered to be as accurate as those from Annex 1 countries. 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