期刊文献+

不同快速裂解气氛下的烟煤表面微观特性 被引量:1

Investigation into microscopic characteristics of bituminous surface under different fast pyrolysis conditions
下载PDF
导出
摘要 采用实验工况与电站煤粉锅炉相近的管式炉实验装置,分别制取了N2,φ(N2)=83.4%∶φ(CO2)=16.6%,φ(N2)=81.6%∶φ(CO2)=16.6%∶φ(O2)=1.8%3种气氛下神木烟煤快速裂解的煤焦.结合扫描电子显微镜和烟气分析仪检测发现,与煤粉处于堆积态的慢速热解不同,3种气氛下煤快速热解时破碎的小颗粒较多,随着停留时间的增加,煤焦表面的小孔结构逐渐增多;与N2气氛下相比,加入CO2后煤焦表面变得更致密,再加入O2后,随着停留时间的增加,煤焦表面发生微弱燃烧. In a drop tube furnace with the combustion conditions similar to those of actual pulverized coal furnace,ShenMu bituminous coal char of fast pyrolysis conditions are prepared under different reaction atmospheres of N2,φ(N2)=83.4%∶φ(CO2)=16.6%,φ(N2)=81.6%∶φ(CO2)=16.6%∶φ(O2)=1.8%.By means of scanning electron microscopy and flue gas analyzer,the achieved experimental results are quite different from slow pyrolysis of packing pulverized coal.Under fast pyrolysis conditions,more small particles of coal crushing are found.With increasing residence time,the small holes on the surface of char gradually increase.Compared with N2 atmosphere,the surface of the char under φ(N2)=83.4%∶φ(CO2)=16.6% atmosphere becomes more densely.Finally,with increasing residence time,under φ(N2)=81.6%∶φ(CO2)=16.6%∶φ(O2)=1.8% atmosphere,some weak fire is found on the surface of the coal char.
出处 《扬州大学学报(自然科学版)》 CAS 北大核心 2013年第2期69-72,78,共5页 Journal of Yangzhou University:Natural Science Edition
基金 国家自然科学基金资助项目(51106133) 江苏省自然科学基金资助项目(BK2010314) 江苏省高校自然科学基金资助项目(10KJB470010)
关键词 快速裂解 反应气氛 煤焦 扫描电镜 孔隙结构 fast pyrolysis reaction atmosphere coal char scanning electron microscopy porous structure
  • 相关文献

参考文献9

二级参考文献92

共引文献171

同被引文献10

  • 1HWANG M Y,KIM S M, KIM G B,et al. Simulation studies on direct ash recycling and reburning technologyin a tangentially fired 500 MW pulverized coal boiler [J]. Fuel,2013,114: 78-87.
  • 2LUAN Tao,WANG Xuedong, HAO Yuzhen,et al. Control of NO emission during coal reburning [J]. ApplEnergy, 2009, 86(9): 1783-1787.
  • 3ZARNITZ R,PISUPATI S. Identification of significant factors in reburning with coal volatiles [J]. Environ SciTechnol, 2008, 42(6). 2004-2008.
  • 4KONG Jiao, ZHAO Ruifang, BAI Yonghui,et al. Study on the formation of phenols during coal flash pyrolysisusing pyrolysis-GC/MS [J], Fuel Process Technol, 2014,127 : 41-46.
  • 5BURCH T E,CHEN W Y,LESTER T W, et al. Interaction of fuel nitrogen with nitric oxide during reburningwith coal [J]. Combust Flame, 1994,98(4) : 391-401.
  • 6CHEN W Y,MA L. Effect of heterogeneous mechanisms during reburning of nitrogen oxide [J]. AIChE J,1996, 42(7): 1968-1975.
  • 7LIU H,HAMPARTSOUMIAN E,GIBBS B M. Evaluation of the optimal fuel characteristics for efficient NOreduction by coal reburning [J]. Fuel, 1997,76(11) : 985-993.
  • 8GAO C Y,HIGUCHI T,YOSHIZAWA A,et al. Role of char in NO, formation during coal combustion at a re-generator temperature of calcium looping process [J]. Fuel, 2014,121 : 319-326.
  • 9TANIGUCHI M,KAMIKAWA Y, YAMAMOTO K. Comparison of staged combustion properties betweenbituminous coals and a low-rahk coal; fiber-shaped crystallized carbon formation,NO: emission and coal burn-out properties at very high temperature [J]. Combust Flame, 2013,160(10) : 2221-2230.
  • 10齐永锋,章明川,于娟.考虑热解产物组分的煤粉着火燃烧数学模型[J].上海交通大学学报,2013,47(9):1358-1362. 被引量:3

引证文献1

二级引证文献1

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