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生物质化学链气化过程中甲苯转化

赵天 秦宁 朱万进 高行龙 张贺 杨振

化学工程2026,Vol.54Issue(2):64-70,7.
化学工程2026,Vol.54Issue(2):64-70,7.DOI:10.3969/j.issn.1005-9954.2026.02.011

生物质化学链气化过程中甲苯转化

Toluene conversion during chemical looping gasification of biomass

赵天 1秦宁 2朱万进 1高行龙 3张贺 1杨振4

作者信息

  • 1. 国能徐州发电有限公司,江苏徐州 221135
  • 2. 国家能源集团江苏电力有限公司,江苏南京 210017
  • 3. 国能常州发电有限公司,江苏常州 213033
  • 4. 江苏方天电力技术有限公司,江苏南京 211102
  • 折叠

摘要

Abstract

Biomass tar is a significant challenge in biomass gasification technology.Biomass chemical looping gasification technology can mitigate tar formation through the catalytic oxidation of oxygen carriers,and the performance of oxygen carriers is crucial for effective tar conversion.Various LaM(M=Fe,Ni,Co,Mn,Cu)oxygen carriers were prepared using the sol-gel method.Experiments on chemical looping conversion of toluene,serving as a model compound for biomass tar,were carried out in a fixed bed reactor.The effects of oxygen carrier type,steam and molar ratio of steam to carbon in toluene nS/C on gas composition,toluene conversion,C1 and H2 yields were investigated.The results show that compared with LaCu,LaMn and LaCo,LaFe and LaNi exhibit superior performance in the partial oxidation and catalytic conversion of toluene.The synergistic effect of Fe and Ni in LaFe1-xNix makes a smaller grain and some new compounds like LaFe0.9Ni0.1O3 which can further promote toluene conversion.However,due to insufficient oxygen supply,serious carbon deposition occurs.The addition of steam significantly promotes tar reforming and coke gasification,reducing carbon deposition and greatly improving C1 and H2 yields.For LaFe0.6Ni0.4,when the steam-to-carbon ratio is increased to 1.6,the C,yield reaches 95.65%,the carbon deposition ratio is less than 0.18%,and the H2 yield reaches 264.53%.Multiple cycle experiments indicate that LaFe0.6Ni0.4 exhibits good reactivity stability.

关键词

载氧体/化学链转化/甲苯重整/合成气

Key words

oxygen carrier/chemical looping conversion/toluene reforming/syngas

分类

能源科技

引用本文复制引用

赵天,秦宁,朱万进,高行龙,张贺,杨振..生物质化学链气化过程中甲苯转化[J].化学工程,2026,54(2):64-70,7.

基金项目

国家能源集团江苏省电力有限公司科技项目(JSKJ-23022-20) (JSKJ-23022-20)

化学工程

1005-9954

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