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第12期 白皓等:钢铁企业CO,排放模型及减排策略 1629 C0减排可达到6.68%左右:第四种情景的C0减 seet扣aking by optm ised scrap str版teg ies Applica ti知ofP0oess 排量不显著,约为3.3%:第三种情景体现了节能 integration models an the BEBOF systm ISIJ ht 2006 46 (12片1752 技术的减排优势,其减排量约为9.14%,若钢产量 「8 Clmae Potection Parmersh Ds DivisonOffice of Amospheric Pro 达到2000万时,0减排量为367.05万第二 grams ofU S Enviormental Protecton Agency Diect em issins 种情景实现CQ减排的目标最有效,若不考虑电炉 from imn and steel production//EPA Clmate Leaders Parmer 的用电消耗时减排量约为45.07%,若考虑电炉的 Meeting Washingxn D C.2003 用电消耗时减排量约为24.30%. 9 W ang ZM W agY Conparison ofBF and COREX Process/Iron and Sted AnnualMeeting Poceedings Beijing 2005 390 参考文献 (王泽懲,王彦.OREX流程与高炉流程比较/205中国钢铁 【】R知R Weng D Cument siuation of CO em issi知in ion and 年会论文集.北京,2005390) steel producing and its controllingme thols SciTechnol Rey 2006 [10 Zharg HY A best soution of EAF stee making Metall hf Rey 2008(2):45 (10):53 (张化义.一种最佳电炉炼钢方案.治金信息导刊,2008(2 (冉锐.翁端.中国钢铁生产过程中的)排放现状及减排措 45) 施.科技导报,2006(10):53) 【l】W angX DaiPK Pan W.et al Melting process optmizatin of 【3 ZhangC X WangH E Circular Econamy in theChneseSteel In 7tUHP electrical arc fumace SteelPe2009 38(4):39 dustry Case Studies of Two PibtEnterprises Beijng Central Iion (王鑫,戴平康潘伟,等.70超高功率电弧炉治炼工艺优化. SteelResearch hstitute 2007 钢管,200938(4:39 张春霞,王海风.中国钢铁行业实行循环经济的试点企业案 [12 Chen JX FerousMetallugy(Steemaking).Beijng ChinaMet 例研究.北京:中国钢铁研究总院,2007) allurgical Industry Press 2007 3]2006 PCC Guilelines pr National Greenhouse Gas hvenpries (陈家祥.钢铁冶金学.北京:治金工业出版社,2007) Hayaa Instite for Gldal Enviromental Stmtegies GES). 【l3到Rut M Technobgy chan您e in US irn and steel Prductin Re 2006 our Poli199521(3):199 [4 Clmate Change Em issn Cakultion Tool User Guide Verspn 1.02 htemationalIron ad Steel Instiute 200 [14 BaiH MaY W angG etal Scenario analysis based on the de composition model of energy consmption index in a steelpant J I5]TanakaK MatsuhahiR NishoM etal CO reduction potential Univ Sci Technol Beiing 2010 32(11):1513 by energy effic ient technopgy n energy intensive industry/Indus (白皓,马扬,王刚,等.钢铁企业基于能耗指标分解模型的情 ty Expent Reviev Meeting the Fourth Assessment ofWorng Group3 PCC Cape Town 2006 景分析.北京科技大学学报,201032(11):1513) 【(Wang C Larsson M RmC A malel a CO,ms知edr [15 Wang J J CaiJ J Chen CX Report on resiual heatand ener g in Chinese steel industry hd Heat 2007.36(2):1 tion in itegrated stee making by optm izationm ethods ht J Ener (王建军,蔡九菊.陈春霞.我国钢铁工业余热余能调研报告. R200832(12):1092 【刀R血nC LarssonM Reduction of m issicns fom integraed 工业加热,200736(2):1)第 12期 白 皓等:钢铁企业 CO2 排放模型及减排策略 CO2 减排可达到 6.68%左右;第四种情景的 CO2 减 排量不显著, 约为 3.39%;第三种情景体现了节能 技术的减排优势, 其减排量约为 9.14%, 若钢产量 达到 2 000 万 t时, CO2 减排量为 367.05 万 t;第二 种情景实现 CO2 减排的目标最有效, 若不考虑电炉 的用电消耗时减排量约为 45.07%, 若考虑电炉的 用电消耗时减排量约为 24.30%. 参 考 文 献 [ 1] RanR, WengD.CurrentsituationofCO2 emissioninironand steelproducinganditscontrollingmethods.SciTechnolRev, 2006 ( 10) :53 (冉锐, 翁端.中国钢铁生产过程中的 CO2 排放现状及减排措 施.科技导报, 2006 ( 10) :53) [ 2] ZhangCX, WangHF.CircularEconomyintheChineseSteelIn￾dustry:CaseStudiesofTwoPilotEnterprises.Beijing:CentralIron &SteelResearchInstitute, 2007 (张春霞, 王海风.中国钢铁行业实行循环经济的试点企业案 例研究.北京:中国钢铁研究总院, 2007) [ 3] 2006 IPCCGuidelinesforNationalGreenhouseGasInventories. Hayama:InstituteforGlobalEnvironmentalStrategies( IGES), 2006 [ 4] ClimateChangeEmissionCalculationTool:UserGuide, Version 1.02.InternationalIronandSteelInstitute, 2005 [ 5] TanakaK, MatsuhashiR, NishioM, etal.CO2 reductionpotential byenergyefficienttechnologyinenergyintensiveindustry∥Indus￾tryExpertReviewMeetingtotheFourthAssessmentofWorking Group3 IPCC.CapeTown, 2006 [ 6] WangC, LarssonM, RymanC.AmodelonCO2 emissionreduc￾tioninintegratedsteelmakingbyoptimizationmethods.IntJEner￾gyRes, 2008, 32( 12) :1 092 [ 7] RymanC, LarssonM.ReductionofCO2 emissionsfromintegrated steelmakingbyoptimisedscrapstrategies:Applicationofprocess integrationmodelsontheBF-BOFsystem.ISIJInt, 2006, 46 ( 12 ):1752 [ 8] ClimateProtectionPartnershipsDivisionOfficeofAtmosphericPro￾gramsofU.S.EnvironmentalProtectionAgency.Directemissions fromironandsteelproduction∥ EPAClimateLeadersPartner Meeting.WashingtonD.C., 2003 [ 9] WangZM, WangY.ComparisonofBFandCOREXprocess∥Iron andSteelAnnualMeetingProceedings.Beijing, 2005:390 (王泽慜, 王彦.COREX流程与高炉流程比较 //2005中国钢铁 年会论文集.北京, 2005:390) [ 10] ZhangHY.AbestsolutionofEAFsteelmaking.MetallInfRev, 2008 ( 2) :45 (张化义.一种最佳电炉炼钢方案.冶金信息导刊, 2008( 2 ): 45 ) [ 11] WangX, DaiPK, PanW, etal.Meltingprocessoptimizationof 70tUHPelectricalarcfurnace.SteelPipe, 2009, 38 ( 4) :39 (王鑫, 戴平康, 潘伟, 等.70t超高功率电弧炉冶炼工艺优化. 钢管, 2009, 38 ( 4) :39) [ 12] ChenJX.FerrousMetallurgy( Steelmaking) .Beijing:ChinaMet￾allurgicalIndustryPress, 2007 (陈家祥.钢铁冶金学.北京:冶金工业出版社, 2007) [ 13] RuthM.TechnologychangeinUSironandsteelproduction.Re￾sourPolicy, 1995, 21 ( 3) :199 [ 14] BaiH, MaY, WangG, etal.Scenarioanalysisbasedonthede￾compositionmodelofenergyconsumptionindexinasteelplant.J UnivSciTechnolBeijing, 2010, 32 ( 11) :1513 (白皓, 马扬,王刚, 等.钢铁企业基于能耗指标分解模型的情 景分析.北京科技大学学报, 2010, 32 ( 11) :1513 ) [ 15] WangJJ, CaiJJ, ChenCX.Reportonresidualheatandener￾gyinChinesesteelindustry.IndHeat, 2007, 36( 2 ):1 (王建军, 蔡九菊, 陈春霞.我国钢铁工业余热余能调研报告. 工业加热, 2007, 36 ( 2) :1) · 1629·
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