期刊文献+

循环流化床煤气化试验研究(英文) 被引量:27

EXPERIMENTALSTUDYON COALGASIFICATION INACIRCULATING FLUIDIZED BED
下载PDF
导出
摘要 在常压循环流化床中试装置上进行了神华煤的气化试验,试验条件:加煤速率5.4~8.14kg/h、蒸汽煤比0.19~0.7kg/kg、空气煤比2.8~3.67kg/kg,分析了试验条件对煤气组成、热值、碳转化率和煤气效率的影响.在该试验阶段获得的煤气的最高热值为3.84MJ/Nm3,最高碳转化率为73.6%.由于提升管的高度很小、气化温度较低以及旋风炉对细颗粒分离效率不高,导致损失于飞灰中碳较多.试验结果表明对神华煤而言,气化温度应低于930℃以避免结渣. Experiment results on gasification of a bituminous coal in a pilot scale circulating fluidized bed at atmospheric pressure and different operation conditions, rates of coal feed from 5.4 to 8.14kg/h, ratios of steam/coal from 0.19 to 0.7kg/kg and ratios of air/coal from 2.8 to 3.67kg/kg, are reported. The effect of operation conditions on gas compositions, calorific values, carbon conversions and gasification efficiencies are analyzed. At present stage, the maximum calorific value of product gas was 3.84MJ/Nm3 and the highest coal conversion efficiency was 73.7%. Much carbon was lost in fly ash after the cyclone due to the short of the lift, the low gasification temperatures and the low separation efficiency of the cyclone for fine particles. Gasification temperature must be limited to 930℃ for Shenhua coal to avoid slagging.
出处 《中国电机工程学报》 EI CSCD 北大核心 2005年第9期103-107,共5页 Proceedings of the CSEE
基金 国家 863 高技术基金项目(2003AA529220)~~
  • 相关文献

参考文献18

  • 1段立强,林汝谋,蔡睿贤,金红光.整体煤气化联合循环(IGCC)底循环系统变工况特性[J].中国电机工程学报,2002,22(2):26-30. 被引量:45
  • 2徐越,吴一宁,危师让.二段式干煤粉气流床气化技术的模拟研究与分析[J].中国电机工程学报,2003,23(10):186-190. 被引量:83
  • 3ChatterjeePK, DattaAB, KumduKM. Fluidized bed gasification of coal[J]. Can. J.Chem. Eng., 1995, 73: 204-209.
  • 4Peng Wanwang, Bu Xuepeng. Fluidized bed gasification development in China [C].Proceedings of international conference on Engineering &Technological Science,Beijing, China, 2000: 259-264.
  • 5刘向军,徐旭常.循环流化床内稠密气固两相流动的数值模拟[J].中国电机工程学报,2003,23(5):161-165. 被引量:44
  • 6Reh L. New and efficient high-temperature process with circulating fluid bedreactors[J]. Chem. Eng. Tech., 1995, 18: 75-79.
  • 7Hirschfelder H, Vierrath H. Electricity and syngas from biomass and wastes applyingCFB gasification [C]. Proceedings of 6th International Conference on Circulating FluidizedBeds Wurzburg, Germany,1999: 459-467.
  • 8RobertsonA, FroehlichR, FanZetal. Partial gasification tests with Pittsburgh No 8coal[C]. The 28th Inter. Tech. Conf. on Coal Utilization & Fuel Systems, Florida, USA,2003: 719-729.
  • 9Foster Wheeler Development Corporation. Technical Progress Report DOE Report[R].40972R01 for quarter: April 1-June 30, 2001, USA.
  • 10Robertson A. Development of Foster Wheeler's Vision 21 Partial GasificationModule[C]. Vision 21 Program Review Meeting,Morgantown, West Virginia, USA, 2001.

二级参考文献51

  • 1朱子彬,马智华,张成芳,阿 雅文.活性点数对煤焦气化反应的影响Ⅰ.气化活性的评价[J].燃料化学学报,1994,22(3):321-328. 被引量:11
  • 2房倚天,李海滨,张建民,王洋,张碧江.循环流化床技术在煤气化过程中的应用前景[J].煤化工,1996,24(4):19-23. 被引量:11
  • 3连桂森.多相流流动基础[M].杭州:浙江大学出版社,1991..
  • 4刘向军 徐旭常 潘小兵.循环流化床气内颗粒团运动的数值模拟(Numerical study of cluster behaviorin a gas-particle circulating fluidizeal bed)[A]..青岛:中国工程热物理学会第十届燃烧学学术会议.(Conference of the 10th Chinese Engineering Thermophysics[C].Qingdao:Combustion,2001..
  • 5国家电力公司热工研究院.两段式干煤粉气化炉[P].专利号01240407.1(No.01240407.1)..
  • 6徐越.干煤粉加压气化技术报告之六[R].西安:热工研究院,TPRI/T8-RA-006-2002,2002.6.
  • 7壳牌国际石油产品公司 电力工业部华北电力设计院 电力工业部热工研究院.中国IGCC电站项目初步可行性研究报告[R].北京:华北电力设计院,1997.12.
  • 8Lourenco L, Tiethmuller M L, Essers J A. The kinetic model for gas particle flow and its numerical implementation[A]. International conference on the physical modelling of muff-phase flow [C]. Covenuy, England, 1983, (4): 19-21,501-525.
  • 9Owsterle B, Petitjean A. Simulation of particle-to-particle interactions in gas-solid flows [J]. Int. J. Multiphase Flow, 1993, 19(1): 199-211.
  • 10Tanaka T, Tsuji Y. Numerical simulation of gas-solid two-phase flow in a vertical pipe: on the effect of inter-particle collision[J]. Gas-Solid Flows, ASME, 1991, 121: 123-128.

共引文献198

同被引文献494

引证文献27

二级引证文献355

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部