期刊文献+

烘焙稻壳与不同煤化程度的煤共热解特性 被引量:9

co-Pyrolysis characteristics of torrefied rice husk with different coalification degree coals
在线阅读 下载PDF
导出
摘要 稻壳在250℃/30 min条件下烘焙后,与无烟煤、烟煤和褐煤3种不同煤化程度煤进行不同比例的混合,混合物分别进行热重分析和高温共热解特性研究。结果表明:热重分析中,添加烘焙稻壳有利于提高无烟煤和烟煤的转化率,其提高率低于5%,但是不利于提高褐煤的转化率;高温共热解实验中,随着烘焙稻壳添加比例的提高,无烟煤和烟煤与烘焙稻壳共热解固体产物减少,气体产物增加,而褐煤与烘焙稻壳共热解固体产量增加,气体产量略有下降;烘焙稻壳的添加有利于共热解产气中H2组分的增加和CO2组分的减少,通过改变烘焙稻壳在混合物中的比例可以对共热解气体组分进行调节。 Rice husk was torrefied at the condition of 250 ℃/30 min,then blended it with anthracite, bituminous coal and lignite at different ratios,which had different coalification degrees. The mixtures were analyzed by Thermal Gravimetric Analyzer (TGA) and co-pyrolysis experiments. The results showed that torrefied rice husk had the advantage of raising conversion of the anthracite and bituminous coal by analyzing the TG curves,the increased rates were no more than 5%,but the torrefied rice husk had a negative effect on the conversion of lignite. In the experiments of co-pyrolysis,with the increase of torrefied rice husk in anthracite and bituminous coal,the solid products of the mixtures were lowered and the the gaseous products were increased,but the torrefied rice husk had an inhibitive effect on lignite. The addition of torrefied rice husk in the blends had the effect of accruing the content of H2 and reducing the content of CO2. So changing the percentage of torrefied rice husk in the mixtures had the effect of regulating the component of syngas.
出处 《化工进展》 CAS CSCD 北大核心 2014年第3期643-650,共8页 Chemical Industry and Engineering Progress
基金 国家“十二五”科技支撑计划项目(2012BAA09B03)
关键词 烘焙 稻壳 煤炭 共热解 torrefaction rice husk coal co-pyrolysis
  • 相关文献

参考文献28

  • 1尚琳琳,程世庆,张海清.生物质与煤共热解特性研究[J].太阳能学报,2006,27(8):852-856. 被引量:25
  • 2Park Dong Kyoo, Kim Sang Done, Lee See Hoon, et al. Co-pyrolysis characteristics of sawdust and coal blend in TGA and a fixed bed reactor[J].Bioresource Technology, 2010, 101 (15): 6151-6156.
  • 3Haykiri-Acma H, Yaman S. Interaction between biornass and different rank coals during co-pyrolysis[J]. Renewable Energy, 2010, 35 (1): 288-292.
  • 4Straka P, Nahunkova J, Brozova Z. Kinetics of co-pyrolysis of coal with polyamide 6[J]. J. Anal. Appl. PyroL, 2004, 71 : 213-221.
  • 5Ishaq M, Abroad 1, Shakirullah M, et al. Pyrolysis of some whole plastics and plastics and plastics-coal mixture[J]. Energ. Convers. Manage, 2006, 47 (18-19): 3216-3223.
  • 6Sharypov V I , Beregovtsova N G , Kuznetsov B N, et al. Influence of reaction parameters on brown coal-polyolefinic plastic co-pyrolysis behavior[J]. J. Anal Appl. PyroL, 2007, 78(2): 257-264.
  • 7Zhang Li, Xu Shaoping, Zhao Wei, et al. Co-pyrolysis of biomass and coal in a free fall reactor[J]. Fuel, 2007, 86 (3): 353-359.
  • 8Colot A G, Zhuo Y, Dugwel D R. Co-pyrolysis and co-gasification of coal and biomass in bench scale fixed-bed and fluidized bed reactor[J].Fuel, 1999, 78: 667-679.
  • 9Storm C, Rudiger H, Spliethoff H, et al. Co-pyrolysis of coal/biomass and coal/sewage sludge mixtures[J]. Journal of Engineering for Gas Turbines andPower, 1999, 1 ( 121 ): 55-63.
  • 10郭凯,李伟振,王立群,宋旭.煤与生物质(稻秸秆)共热解反过程及协同性研究[J].郑州轻工业学院学报(自然科学版),2008,23(5):77-80. 被引量:7

二级参考文献91

共引文献202

同被引文献102

引证文献9

二级引证文献31

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