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提出了炼铁发电联产流程-整体高炉联合循环(IBFCC).为此还总结了高炉的造气特点和整体煤气化联合循环(IGCC)开发历程.通过建立以物料和能量平衡为基础的数学模型,模拟研究了风口喷吹制度对高炉炉顶煤气流量和热值的影响.计算和分析表明,整体高炉联合循环具有高效和清洁的优势.

参考文献

[1] Leonard G;Berfling R.Latest Commissioning and Operational Results of COREX C-2000 Plants. In: Iron and Steel Society 58th Ironmaking Conference Proceedings[A].Chicago,1999:361-366.
[2] Dry R J;Bates C P;Price D P.HIsmelt - The Future in Direct Ironmaking[A].Chicago,1999:355-360.
[3] Ishii K.Advanced Pulverized Coal Injection Technology and Blast Furnace Operation[M].Oxford:Pergamon,2000:296.
[4] RUIXIAN C;Rumou L.IGCC - An advanced Power Generation System with High Efficiency, Low Pollution and Low Water Consumption for China[A].Institute of Engineering Thermophysics, CAS, PRC And Tulane University,December 1996:71
[5] 刘韶林,闫安民,李冠华,王宏志,刘跃新,王磊.燃煤联合循环发电技术及其发展前景[J].洁净煤技术,2000(03):41-47.
[6] Hao Jieming;Wang Shuxiao;Lu Yongqi.Handbook of coal-fired SO2 emission control technologies[M].北京:化学工业出版社,2001:20.
[7] 沙兴中;杨南星.煤的气化与应用[M].武汉:华中理工大学出版社,1995:242.
[8] 段立强,林汝谋,金红光,蔡睿贤.整体煤气化联合循环(IGCC)技术进展[J].燃气轮机技术,2000(01):9-17.
[9] 党黎军.整体煤气化联合循环发电技术进展[J].锅炉制造,2000(04):10-17.
[10] 林汝谋,王应时.IGCC技术在中国的发展前景--基于中美专家报告的综评[J].燃气轮机技术,1997(03):1.
[11] Fang Y;Kuang C;Liu L.Hot gas filtration and advanced filter elements development[A].,2000:77-82.
[12] Kuang C;Fang Y;Yang.Advanced materials and environmental protection[A].北京:新世界出版社,2000:437-440.
[13] Biasi Victor .Gasification on track to turn problems fuels into electric power and products[J].Gas Turbine World,2000,29(06):12-22.
[14] S. Consonni;E. D. Larson;T. G. Kreutz;N.Berglin .Black liquor gasifier / gas turbine cogeneration[J].Journal of engineering for gas turbines and power: Transactions of the ASME,1998(3):442-449.
[15] 焦树建.论IGCC技术在石化企业中的应用[J].燃气轮机技术,1999(04):8.
[16] M. A. Paisley;D. Anson .Biomass gasification for gas turbine-based power generation[J].Journal of engineering for gas turbines and power: Transactions of the ASME,1998(2):284-288.
[17] Larson E D;Marrison C I .Economic Scales for First Generation Biomass-Gasifier/Gas Turbine Combined Cycles Fueled form Energy Plantations[J].Journal of Engineering for Gas Turbines and Power,Transactions of the ASME,1997,119(04):285-290.
[18] 徐振刚 .美国洁净煤技术项目中的IGCC[J].洁净煤技术,1995,2:52-56.
[19] 焦树建.关于IGCC的发电成本问题[J].燃气轮机技术,2000(04):1-6.
[20] Staff Report.High gas prices and petcock panic boost IGCC[J].Modern Power Systems,2000:37-39.
[21] 王政民.高炉煤气的合理使用与节能潜力[J].冶金能源,1999(01):36.
[22] 马焕芬,董文林.河北省高炉煤气发电工程的实践和探讨[J].冶金能源,1996(03):54.
[23] 牛福安 .高炉煤气发电项目的评价方法及推广前景[J].中国能源,1999,3:9-11.
[24] 任建兴,章德龙,周伟国,李世魏,王鼎,张兴良.低热值高炉煤气在发电设备中的应用[J].上海电力学院学报,2001(02):1-4.
[25] 秦民生;高征铠;王冠伦 .高炉全氧鼓风操作的研究[J].钢铁,1987,22(12):1-4.
[26] Lu WK;Kumar RV .The Feasibility of Nitrogen Free Blast Furnace Operation[J].Iron and Steel Soc of AIME,1984,5:25-31.
[27] Ma JT;Edstrom JO .The balanced oxygen blast furnace (BOBF) ironmaking process[J].Scandinavian Journal of Metallurgy,1992,21:104-111.
[28] Ohno Yotaro;Matsuura Masahiro;Mitsufuji Hiroyuki .Process Characteristics of Commercial-scale Oxygen Blast Furnace Process with Shaft Gas Injection[J].ISIJ International,1992,32(07):838-847.
[29] Matsuura M;Mitsufji H;Furukawa T.Development of the Oxygen Blast Furnace Process[A].Nagoya:ISIJ,1990:581-588.
[30] 尹建威 .氧气高炉-联合循环发电炼铁流程(OBF-CC)的应用基础研究[D].北京科技大学,2001.
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