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TG-FTIR研究落叶松和废轮胎共热解失重及产物释放特性

贺宏奎 王文亮 常建民

贺宏奎, 王文亮, 常建民. TG-FTIR研究落叶松和废轮胎共热解失重及产物释放特性[J]. 燃料化学学报(中英文), 2014, 42(07): 799-804.
引用本文: 贺宏奎, 王文亮, 常建民. TG-FTIR研究落叶松和废轮胎共热解失重及产物释放特性[J]. 燃料化学学报(中英文), 2014, 42(07): 799-804.
HE Hong-kui, WANG Wen-liang, CHANG Jian-min. Co-pyrolysis of waste tire and larch wood in TG-FTIR[J]. Journal of Fuel Chemistry and Technology, 2014, 42(07): 799-804.
Citation: HE Hong-kui, WANG Wen-liang, CHANG Jian-min. Co-pyrolysis of waste tire and larch wood in TG-FTIR[J]. Journal of Fuel Chemistry and Technology, 2014, 42(07): 799-804.

TG-FTIR研究落叶松和废轮胎共热解失重及产物释放特性

基金项目: 山西省科技攻关项目(20110321017-03);教育部博士学科点专项科研基金(20130014110015)。
详细信息
    通讯作者:

    常建民,教授,E-mail:cjianmin@bjfu.edu.cn。

  • 中图分类号: TK6

Co-pyrolysis of waste tire and larch wood in TG-FTIR

  • 摘要: 利用热重红外法(TG-FTIR)考察了不同质量混合比例(1:2、1:1、2:1)落叶松和废轮胎共热解失重、动力学规律及气相产物释放特性。共热解失重特性研究发现,温度低于366℃共热解主要表现为以落叶松为主的热降解行为,温度高于366℃主要表现为以废轮胎为主的热降解行为,热解效率随着落叶松加入比例的增大而提高。采用Coats-Redfern动力学模型对共热解动力学分析发现,主要失重阶段低温区(250~370℃)和高温区(370~480℃)热解行为均符合一级动力学规律,高温区活化能均明显低于低温区,随着落叶松加入比例的增大,活化能明显降低,使得热降解更容易发生。红外分析表明,共热解过程中主要生成含氧官能团的有机物及含氧小分子气体,6种小分子气体吸收峰析出强度由大到小依次为CO2>CH4>H2O>CO>SO2>H2S,其中,废轮胎中的硫在落叶松降解过程中产生的氧自由基作用下主要转化为SO2
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出版历程
  • 收稿日期:  2014-04-18
  • 修回日期:  2014-06-08
  • 刊出日期:  2014-07-30

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