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输运床气化炉IGCC系统在不同净化方案配置下的热力性能比较 被引量:1

Thermal Performance Comparison of IGCC System with Transport Gasifier in Different Syngas Clean-up Configurations
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摘要 以输运床气化炉和E级燃气轮机为基础,构建了采用湿法除尘+低温脱硫、干法除尘+低温脱硫、干法除尘+中温脱硫和干法除尘+高温脱硫等4种净化方案的整体煤气化联合循环(IGCC)系统.应用输运床气化炉平衡模型和燃气轮机变工况模型,在相同的NOx排放标准和燃气轮机阀站煤气进气温度的条件下,对采用不同净化工艺方案的输运床IGCC系统的热力性能进行了计算和比较.结果表明:采用干法除尘+中温脱硫净化方案的输运床IGCC系统的供电效率为42.22%,比采用湿法除尘+低温脱硫方案的IGCC系统高1.34%;燃气轮机煤气进气温度的升高有利于提高IGCC系统的供电效率. Based on the transport gasifier and frame E gas turbine (GT), four integrated gasification combined cycle (IGCC) systems with different syngas clean-up processes were configured, including wet dust removal(DR) + low temperature (LT) desulfurization, dry DR + LT desulfurization, dry DR+ medium temperature(MT) desulfurization and dry DR+ high temperature desulfurization. Thermal performances of IGCC systems with different syngas clean-up modes were calculated by using equilibrium model of gasifier and off-design model of GT under conditions of the same NOx emission and inlet fuel temperature of GT. Results show that the power supply efficiency of IGCC system with transport gasifier adopting wet dust removal and MT desulfurization is 42.22%, which is 1.34 % higher than that adopting wet DR+LT desulfurization. Higher inlet fuel temperature of GT is helpful to increase the the power supply efficiency of the IGCC system.
出处 《动力工程》 CSCD 北大核心 2009年第7期688-693,共6页 Power Engineering
基金 国家高技术研究发展计划课题资助项目(2006AA05A109)
关键词 整体煤气化联合循环 合成气净化 输运床气化炉 热力性能 IGCC syngas clean-up, transport gasifier thermal performance
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  • 1PINKSTON T.MORTON F.Orlando gasification project:demonstration of a 285 MW coal-based trans-port gasifier[C]//The 31st htternational Technical Conference On Coal Utilization & Fuel Systems.Flori-da,United States:[s.n.],2006.
  • 2NETL.Shell Gasifier IGCC Base Cases:PED-IGCC-98-002[R/OL].(2006-06)E2008].http://www.fis-cher-tropsch.org/DOE/DOE-reports/PED-IGCC-98/PED-lGCC-98-002/shell3x-.pdf.
  • 3NETL.Transport Gasifier IGcC Base Cases:PED-IGCC-98-006[R/OL].(2006-06)[2008].http://www.fischer-tropsch.org/DOE/DOE-reports/PDE-IGCC-98/PDE-IGC&98-006/trnspt3x_.pdf.
  • 4NETL.Texaco Gasifier IGCC Base Cases:PED-IGCC-98-001[R/OL].(2006-06)[2008].http://www.fischer-tropsch.org/DOE/DOE-reports/PDE-IGCC-98/PDE-IGCC-98-001/texac3x-.pdf.
  • 5NETL.Destec Gasifier IGCA2 Base eases:PED-IGCc-98-003[R/OL].(2006-06)[2008].http://www.fischer-tropsch.org/DOE/DOE-.reports/PDE-IGCC-98/PDE-IGCC-98-003/destx3x-.pdf.
  • 6许世森.论整体煤气化联合循环(IGCC)中煤气净化技术的选择[J].动力工程,1995,15(5):50-55. 被引量:8
  • 7焦树建.IGCC某些工作系统的设计经验[J].燃气轮机技术,2007,20(1):1-8. 被引量:13
  • 8NEWBYRA,YANGWC,BANNISTERRL.Fuel gas cleanup parameters in air-blown IGCC[J].Jour-hal of Engineering for Gas Turbines and Power,2000,122:247-254.
  • 9ROGERS L H.BONSU A K,EILAND J D.et al.Power from PRB-Four conceptual IGCC plant designs using the transport gasifier[C]//Twenty-Second An-nual International Pittsburgh Coal Conference.Pitts-burgh,PA,USA:University of Pittsburgh,2005.
  • 10王铭忠.IGCC系统中燃气轮机的工况点选择与用“当量温度”进行特性计算[J].燃气轮机技术,1999,12(3):16-21. 被引量:7

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  • 1刘璐,朱慧红,金浩,杨光,吕振辉,杨涛.煤油共炼技术的研究现状[J].当代化工,2020,49(2):410-413. 被引量:7
  • 2赵振新,朱书全,马名杰,张恒,王路宁,颜淑娟,杜晓静.中国褐煤的综合优化利用[J].洁净煤技术,2008,14(1):28-31. 被引量:101
  • 3王志轩,潘荔,张晶杰,杨帆.我国燃煤电厂“十二五”大气污染物控制规划的思考[J].环境工程技术学报,2011,1(1):63-71. 被引量:49
  • 4李政,梁心玉,薛亚丽.基于烟煤、褐煤的IGCC系统技术经济性对比[J].中国电机工程学报,2012,32(5):39-47. 被引量:18
  • 5王毅,王志青.褐煤水热改质及改质废水催化气化的研究[J].煤炭转化,2012,35(3):28-32. 被引量:9
  • 6K.A.Olive,K.Agashe,C.Amsler,M.Antonelli,J.-F.Arguin,D.M.Asner,H.Baer,H.R.Band,R.M.Barnett,T.Basaglia,C.W.Bauer,J.J.Beatty,V.I.Belousov,J.Beringer,G.Bernardi,S.Bethke,H.Bichsel,O.Biebe,E.Blucher,S.Blusk,G.Brooijmans,O.Buchmueller,V.Burkert,M.A.Bychkov,R.N.Cahn,M.Carena,A.Ceccucci,A.Cerr,D.Chakraborty,M.-C.Chen,R.S.Chivukula,K.Copic,G.Cowan,O.Dahl,G.D'Ambrosio,T.Damour,D.de Florian,A.de Gouvea,T.DeGrand,P.de Jong,G.Dissertor,B.A.Dobrescu,M.Doser,M.Drees,H.K.Dreiner,D.A.Edwards,S.Eidelman,J.Erler,V.V.Ezhela,W.Fetscher,B.D.Fields,B.Foster,A.Freitas,T.K.Gaisser,H.Gallagher,L.Garren,H.-J.Gerber,G.Gerbier,T.Gershon,T.Gherghetta,S.Golwala,M.Goodman,C.Grab,A.V.Gritsan,C.Grojean,D.E.Groom,M.Grnewald,A.Gurtu,T.Gutsche,H.E.Haber,K.Hagiwara,C.Hanhart,S.Hashimoto,Y.Hayato,K.G.Hayes,M.Heffner,B.Heltsley,J.J.Hernandez-Rey,K.Hikasa,A.Hocker,J.Holder,A.Holtkamp,J.Huston,J.D.Jackson,K.F.Johnson,T.Junk,M.Kado,D.Karlen,U.F.Katz,S.R.Klein,E.Klempt,R.V.Kowalewski,F.Krauss,M.Kreps,B.Krusche,Yu.V.Kuyanov,Y.Kwon,O.Lahav,J.Laiho,P.Langacker,A.Liddle,Z.Ligeti,C.-J.Lin,T.M.Liss,L.Littenberg,K.S.Lugovsky,S.B.Lugovsky,F.Maltoni,T.Mannel,A.V.Manohar,W.J.Marciano,A.D.Martin,A.Masoni,J.Matthews,D.Milstead,P.Molaro,K.Monig,F.Moortgat,M.J.Mortonson,H.Murayama,K.Nakamura,M.Narain,P.Nason,S.Navas,M.Neubert,P.Nevski,Y.Nir,L.Pape,J.Parsons,C.Patrignani,J.A.Peacock,M.Pennington,S.T.Petcov,Kavli IPMU,A.Piepke,A.Pomarol,A.Quadt,S.Raby,J.Rademacker,G.Raffel,B.N.Ratcliff,P.Richardson,A.Ringwald,S.Roesler,S.Rolli,A.Romaniouk,L.J.Rosenberg,J,L.Rosner,G.Rybka,C.T.Sachrajda,Y.Sakai,G.P.Salam,S.Sarkar,F.Sauli,O.Schneider,K.Scholberg,D.Scott,V.Sharma,S.R.Sharpe,M.Silari,T.Sjostrand,P.Skands,J.G.Smith,G.F.Smoot,S.Spanier,H.Spieler,C.Spiering,A.Stahl,T.Stanev,S.L.Stone,T.Sumiyoshi,M.J.Syphers,F.Takahashi,M.Tanabashi,J.Terning,L.Tiator,M.Titov,N.P.Tkachenko,N.A.Tornqvist,D.Tovey,G.Valencia,G.Venanzoni,M.G.Vincter,P.Vogel,A.Vogt,S.P.Wakely,W.Walkowiak,C.W.Walter,D.R.Ward,G.Weiglein,D.H.Weinberg,E.J.Weinberg,M.White,L.R.Wiencke,C.G.Wohl,L.Wolfenstein,J.Womersley,C.L.Woody,R.L.Workman,A.Yamamoto,W.-M.Yao,G.P.Zeller,O.V.Zenin,J.Zhang,R.-Y.Zhu,F.Zimmermann,P.A.Zyla,G.Harper,V.S.Lugovsky,P.Schaffner.BOTTOM,CHARMED MESONS(B=C=±1)B_c^+=c,B_c^-=cb,similarly for B_c~*'s[J].Chinese Physics C,2014,38(9):1239-1247. 被引量:5
  • 7王临清,朱法华,赵秀勇.燃煤电厂超低排放的减排潜力及其PM_(2.5)环境效益[J].中国电力,2014,47(11):150-154. 被引量:81
  • 8尚庆雨.褐煤干燥脱水提质技术现状及发展方向[J].洁净煤技术,2014,20(6):1-4. 被引量:24
  • 9汤红年.催化裂化装置大型化设计探讨[J].炼油技术与工程,2015,45(6):33-39. 被引量:1
  • 10帅伟,莫华.我国燃煤电厂推广超低排放技术的对策建议[J].中国环境管理干部学院学报,2015,25(4):49-52. 被引量:11

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