ࡱ; .+  !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~Root Entry  \pCalc Ba= @=@ 8X"1Arial1Arial1Arial1Arial1* MS Sans Serif1Arial1Arial1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1.Times New Roman1Arial1.Times New Roman GENERAL0.0 0.00E+00 #,##0 0.00 \$#,##0 #,##0.0 0.0% 0.00% 0.00000 0.000                + ) , *        a a   a"8"  a"8" a"8  a"8" a ( a ( a (  a"8" a ( a ( a (  a"8 a"8 a!8  a"8"  a!8 a ( a! a# a#8 a#8 a ( a ( a (   a"8 a 8 a!8 a"8  a!8" a!8  a!8 a!x a (  a (  a (  a!8 a!8 a 8 a!8  a"8 a"8 a"8  a"8  a"8  a"x a#8 a#8  a (  a"8 a"8"  a 8" a 8" a"8"  a a  a!8 a8 a 8 a 8 a (P a ( a (P a"8!  a"8U a (  a (P a (PP q  q"8 q  q8" q8!" q"8 q"8! q"< q" Table 5.7 Table 5.82C Table 5.93"WINDOWSTEMPAnomalous TCs.xls EmissionsYb   ;@  ;4  ;  ;  ;I  ;$   ;  ;H  ;H  ;1   ;   ; H  ; H  ; 2   ; - DIDOCIReceptorTrans;{& FinalDataSet;D! na_area=Z " SCC_list;& - ZAggrated_Controlls;" 8     3  @@   \[1] Source emissions data&2002 National Emission Inventory (NEI)#for individual emission sources in pertinent origination areas Source classification code (SCC)Source location (FIPS code)!Pollutant (SO2/NOx/primary PM2.5)   [2] Transfer coefficient data Pollutant6 Effects of emissions on ambient concentrations by:"[3] Emission control and cost dataemission' - Pollutant (SO2/NOx/primary PM2.5)3 Control measures suitable for SCC and pollutantrate for1 - Origination area (FIPS codes for states and2 - Control efficiency (proportional reduction)source counties in area)3 - Average annualized cost per ton of emissions" - Affected non-attainment areaTransfer coefficients for sourceAverage annualizedcost per ton ofemissions for each>[4] Contributions of source emissions to initial design valuescontrol measure4Incremental annual average ambient concentrations inControl efficiency1affected non-attainment areas for emission source(proportional reduction)for each control measureIncremental concentrations*[5] Improvements in ambient concentrations[6] Cumulative cost&Reductions in initial design values inTotal annualized abatement costJaffected non-attainment areas for emission source and each control measure'for emission source and control measureReductions in concentrationsTotal annualized costfor source and foreach control measure[7] Aggregation of data8For groups of quantitatively equivalent emission sourcesReductions in Total annualized costsconcentrationsfor source or group[8] Linear programming solution1Determination of cost-effective degree of control Figure 2.1=for each pollutant emitted from each emission source or group Degree of application of controlData Flow in Linearmeasure to source or groupN[9] Cost-effective allocation of control responsibility among emission sourcesProgramming Model_Aggregate total annualized abatement costs and reductions in emissions of individual pollutants_ for specific origination areas, source categories, industries, control measures, and overallVReductions in annual ambient concentrations for specific affected non-attainment areasEControl measures applied to specific source categories and industries?Table 3.1: Nonattainment areas designated by U.S. EnvironmentalFProtection Agency (U.S.EPA) in relation to the annual average NationalHAmbient Air Quality Standard (NAAQS) for fine particulate matter (PM2.5)DG Area Number!EPA Designated Nonattainment Area Design Value 2001-2003 (g/m3) a*Initial excess ambient PM2.5 concentration NA01Chicago-Gary-Lake County, IL-INNA02 Elkhart, INNA03Detroit-Ann Arbor, MINA04 Macon, GANA05 Atlanta, GANA06Birmingham, ALNA07Columbus, GA-ALNA08 Knoxville, TNNA09'Greensboro-Winston Salem-High Point, NCNA10Hickory-Morganton-Lenoir, NCNA11Indianapolis, INNA12Cincinnati-Hamilton, OH-KY-INNA13 Lexington, KYNA14Louisville, KY-INNA15Evansville, IN-KYNA16Charleston, WVNA17Parkersburg-Marietta, WV-OHNA18Washington, DC-MD-VANA19 Baltimore, MDNA20!Philadelphia-Wilmington, PA-NJ-DENA21/New York-N. New Jersey-Long Island, NY-NJ-CT-PANA22Harrisburg-Lebanon-Carlisle, PANA23 Lancaster, PANA24Martinsburg-Hagerstown, WV-MDNA25 Reading, PANA26York, PANA27Cleveland-Akron-Lorain, OHNA28Canton-Masillon, OHNA29Youngstown-Warren-Sharon, OH-PANA30Steubenville-Weirton, OH-WVNA31Wheeling, WV-OHNA32Marion County, WVNA33Pittsburgh, PANA34 Johnstown, PANA35St. Louis, MO-ILNA36Chattanooga, TN-GANA37 Columbus, OHNA38 Toledo, OHNA39 Athens, GANA40Floyd County, GANA41Dayton-Springfield, OHNA42Huntington-Ashland, WV-KY-OHNA43Pittsburgh/Liberty-Clairton, PAa Initial annual average ambient PM2.5 concentration (g/m3), calculated as specified by U.S.EPA for evaluating attainment of the NAAQS# &:;  for PM2.5 Source: U.S. Environmental Protection Agency, Technical Support Document for PM2.5 Designations- Supplemental Notice, April 5, 2005.. v ATable 3.2: Normalized Transfer Coefficients for Origination AreasK[Non-attainment Areas(NA) or Upwind Areas (UW)] Containing Emission SourcesQin the Cement Manufacturing Industry or the Iron and Steel Manufacturing IndustryOrigination AreaNon-Attainment AreaNormalized Transfer CoefficientPM2.5NOxSO2UW01BUW01CUW02BUW03BUW07UW09AUW10UW11AUW12AUW12BUW13 AUW13AUW14UW15AUW15BUW16AUW16BUW18UW20BTable 3.3: Annual emissions from and number of emission sources inOthe cement manufacturing industry and the iron and steel manufacturing industry;located in designated non-attainment areas and upwind areasVwhose emissions affect ambient PM2.5 concentrations in designated non-attainment areas!$#Designated non-attainment area (NA) Annual emissions (tons per year)Number of emission sourcesor upwind area (UW)PM2.5NOxSO2*$Near Chicago-Gary-Lake County, IL-INNear Elkhart, INNear Detroit-Ann Arbor, MIUW05ANear Atlanta, GANear Columbus, GA-AL,Near Greensboro-Winston Salem-High Point, NC!Near Hickory-Morganton-Lenoir, NCNear Indianapolis, IN"Near Cincinnati-Hamilton, OH-KY-INNear Lexington, KYNear Louisville, KY-INNear Evansville, IN-KYNear Charleston, WVNear Washington, DC-MD-VAUW19ANear Baltimore, MD&Near Philadelphia-Wilmington, PA-NJ-DETotal* Emissions and sources for NA43 are included in the values for NA33. NA43 is a small geographic area within Allegheny County, PA, which isone of the six counties that compose NA33. Allegheny County contains 1,386 sources that emitted 1,397 tons of PM2.5, 850 sources that emittedps16,225 tons of NOx, and 826 sources that emitted 47,197 tons of SO2 in 2002. The portions of these sources and emissions that are in NA43 cannotBCLbe readily determined from the data compiled in the final 2002 NEI database.HTable 3.4: Control Efficiencies and Average Annualized Costs per Ton of gPotentially Cost-effective Control Measures Suitable for Abating Emissions of PM2.5, NOx, and SO2 from PSWX`an Different Types of Sources in the Cement Manufacturing Industry or the Iron and Steel Manufacturing Industry Control group Control type Control NamePollutant(s) AbatedControl Efficiency!Cost per ton of pollutant emittedIncremental efficiency Incremental typical cost per tonLowTypicalHighA&Fabric filter - mechanical shaker typePM2.5, PM10, EC, OC  $127 aBB16Dry electrostatic precipitator (ESP) - wire plate type$111 aB2$15 aCFabric filter - pulse jet type$118 aDD1D2E(Fabric filter - reverse-air cleaned typeF3Paper / nonwoven filters - cartridge collector typeG)Low NOx burner and flue gas recirculationNOx b$751 aHH1Low NOx burnerNOx----H2$81 aJJ1Mid-kiln firing$56 aJ2CemStar$494 aJ3#Selective catalytic reduction (SCR)KLL1$571 aL2$179 aL3L46Low NOx burner and selective catalytic reduction (SCR)MM1M2NPP1P2$496 aP3(Selective non-catalytic reduction (SNCR)P4QRS'Advanced flue gas desulfurization (FGD)SO2-a Value adjusted by $1 to avert collinearity.&b Emission of ammonia (NH3) increases.RTable 5.1: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPCOxides of Nitrogen (NOx), and Sulfur Dioxide (SO2) from Sources in Q the Iron and Steel Manufacturing Industry and the Cement Manufacturing Industry VUsing Control Me<asures Specified in AirControlNET to Achieve Specified Improvements inUAmbient PM2.5 Concentrations in 41 Non-attainment Areas in the Eastern United States:  'Industry Totals, Jointly and SeparatelyIndustryNumber of control optionsTotal annualized cost ($1,000s)#Number of control options exercised'Percentage of control options exercisedVBoth industries jointly achieving 75% of their combined maximum attainable improvementCement manufacturingIron and steel manufacturing Total\Both industries separately achieving 75% of their individual maximum attainable improvements\Incremental cost and control from controlling both industries separately rather than jointlyRTable 5.2: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPFEstimates for Source Groups in Both Industries, Jointly and Separately Source groupBy-product coke manufacturing1Ferroalloy manufacturing2Iron production3Steel manufacturing4Iron foundries5Steel foundries6Malleable iron manufacturing7#In-process fuel use - coke related8"#Cement manufacturing - dry process9"$Cement manufacturing - wet process10"dIron and steel manufacturing industry separately achieving 75% of its maximum attainable improvement\Cement manufacturing industry separately achieving 75% of its maximum attainable improvement 1SCC range: 30300302-30300399 5SCC range: 30400301-30400399 8SCC range: 39000701-39000899 2SCC range: 30300601-30300704 6SCC range: 30400701-30400799 9SCC range: 30500606-30500699 3SCC range: 30300801-30300899 7SCC range: 30400901-3040099910SCC range: 30500706-30500799 4SCC range: 30300901-30300999RTable 5.3: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPNEstimates for Control Measures Used in Both Industries, Jointly and SeparatelyControl measureBaseline emissions3Paper / nonwoven Filters - cartridge collector typeTable 5.4: Cost-Effective Control of Emissions of Fine Particulate Matter (PM2.5 ), Oxides of Nitrogen (NOx), and Sulfur Dioxide (SO2) from Sources inMP jk  the Iron and Steel Manufacturing Industry and the Cement Manufacturing Industry Using Control Measures in AirControlNET to Achieve Improvements inin 41 Non-attainment Areas in the Eastern United States: Estimates of Required, Maximum Achievable, and Achieved Improvements in Both Industries, Separately and JointlyNon-attainment Areaa!Design Value 2001-2003 (g/m3)a,b+Initial excess ambient PM2.5 concentrationa**Maximum achievable concentration reduction}Concentration reduction achieved when emissions are reduced sufficiently to achieve 75% of maximum concentration reduction inPercentage of maximum achievable concentration reduction achieved when emissions are reduced sufficiently to achieve 75% of maximum reduction in"Cement manufacturing industry only*Iron and steel manufacturing industry onlyBoth industries separatelyBoth industries jointlyCement manufacturing industry&Iron and steel manufacturing industry Both industries separatelycBoth industries jointlycNA1NA2NA3NA5NA7NA8NA9a Source: U.S. Environmental Protection Agency, Technical Support Document for PM2.5 Designations- Supplemental Notice, April 5, 2005.0xb Initial annual average ambient PM2.5 concentration (g/m3), calculated as specified by U.S.EPA for evaluating attainment of the NAAQS for PM2.5.#&:;c Values in italics are less than specified objective because of separate truncation of component estimates. Values in bold font exceed the specified objective by at least 5%.RTable 5.5: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPMTotals in Both Industries Jointly Achieving Different Percentage ImprovementsVBoth industries jointly achieving 50% of their combined maximum attainable improvementVBoth industries jointly achieving 25% of their combined maximum attainable improvement_Incremental cost and control for achieving 50% instead of 25% of maximum attainable improvement_Incremental cost and control for achieving 75% instead of 50% of maximum attainable improvementRTable 5.6: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPbEstimates for Source Groups in Both Industries Jointly Achieving Different Percentage Improvements#Cement manufacturing - dry process8"#Cement manufacturing - wet process9"$In-process fuel use - coke related10"RTable 5.7: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5),MPiEstimates for Control Methods Used in Both Industries Jointly Achieving Different Percentage ImprovementsTable 5.8: Cost-Effective Control of Emissions of Fine Particulate Matter (PM2.5 ), Oxides of Nitrogen (NOx), and Sulfur Dioxide (SO2) from Sources inMP jk  }in 41 Non-attainment Areas in the Eastern United States: Estimates of Required, Maximum Achievable, and Achieved ImprovementsFin Both Industries Jointly Achieving Different Percentage Improvements7Concentration achieved when minimum reduction sought isbPercentage of maximum achievable concentration reduction achieved when minimum reduction sought is25% of maximum achievable50% of maximum achievable75% of maximum achievableTable 5.9: Cost-effective Control of Emissions of Fine Particulate Matter (PM2.5), Oxides of Nitrogen (NOx), and Sulfur Dioxide (SO2)MPfrom Sources in the Iron and Steel Manufacturing Industry and the Cement Manufacturing Industry Using Control Measures Specified in AirControlNET{ to Achieve Specified Improvements in Ambient PM2.5 Concentrations in 41 Non-attainment Areas in the Eastern United States:03VControl of Emissions of PM10 Co-pollutant as By-product of Controlling PM2.5 PollutantILControl MethodNumber of control optionsaControlled emissions"Percentage of emissions controlledaControl of emissions of PM10 (particulate matter with aerodynamic diameter of at most 10 microns)TOTALcControl of emissions of PM2.5 (particulate matter with aerodynamic diameter of at most 2.5 microns)a The number of options for controlling PM10 is less than the number of options for controlling PM2.5 because no PM10 emissions were reported in the final 2002 NEI*,besu2002 NEI database for a small number of sources of PM2.5 emissions in the cement manufacturing industry and the iron and steel manufacturing industry.59>1 Fw   dMbP?_%1*+&?'?('}'}?)'}'}?"d,, ` `? ` `?U }  } l C1111111uu 1 1 1 1 11111111111111111112 $  $ !""# $$$$$$$%&&' $$$$$$$())))""%  *,**&++++++%&  *,**,-&%&&&&&%&  ***,-&  * ***..%&%,-&  * ***..%&2 //0111-&%&&&&&%&2 233455-&2334&&&&56%& * 55-&6&&&5 *  7  5855-&   6&&&5 *  9  999&&- *  7  ,,:&&&6 *  9999&&- *   7 ,,:;"%&6 <  9999&&- *  7 ,,:7&%&66%& 9999&&- <"9999,&%&6&%&2=>>?&&-=>>?,&%&&,%&2%&&-&@@A@,&%&&,%& ,, B,&&-&,,*,,&%&&,%& ,, B&&-&,,*,,& %&66%,$,,*&&-&%& %&66%&$,C@33334%& %&66%&&  %&&& *&55D5& $$$$$$$  % &&&%&E $$$$$$$  % &&&%&EFGGGGGH  %  &&&*&E2I6666B%&&&%,% *!"**%&&&%&&** *"**%%,&**2&&%%%&102&&233334233J3K 1!1"1#1$1%1&1'1(1),@*,@+,@,1-,@.1/,@0,@1,@2131415161718191:1;1<1=1>1?1  "  # ! !$$!$$$$$ !$%!$$$$$" "$&"$$$$$ "$'"$$$$$2#=>>>>?=>>>>?2$L3%&&L3L3%%& % *( % ** %*)%*%.&%& & ** & ,, &**&,*.'&&&&&&%& ' * ' ** '*+',*2(&&&&&&%&*,,*,%2)MMMMMM%NNNNNN,%*MMMMMM% * O,* OOOOO,%+MMMMMM% + P-+ PPPPP,%2,&&&&&&%QQQQQQ,%2-&&&&&&%32333%-%&.&&&&&&- . 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