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煤及其显微组分热解过程中的半焦收缩动力学

Semicoke Contraction Kinetics of Coal and Its Macerals in Pyrolysis

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【作者】 常海洲曾凡桂李文英李美芬李军谢克昌

【Author】 CHANG Hai-Zhou1,2 ZENG Fan-Gui1, LI Wen-Ying1 LI Mei-Fen1 LI Jun1,2 XIE Ke-Chang1 (1Research Group for Physical Chemistry of Minerals and Environmental Geochemistry, Department of Earth Science and Engineering, Key Laboratory of Coal Science and Technology for Ministry of Education and Shanxi Province, Taiyuan University of Technology, Taiyuan 030024, P. R. China; 2College of Chemistry and Chemical Engineering, Jinzhong College, Jinzhong 030600, Shanxi Province, P. R. China)

【机构】 太原理工大学煤科学与技术教育部及山西省重点实验室地球科学与工程系矿物物理化学与环境地球化学研究室太原理工大学煤科学与技术教育部及山西省重点实验室 地球科学与工程系矿物物理化学与环境地球化学研究室太原理工大学煤科学与技术教育部及山西省重点实验室地球科学与工程系矿物物理化学与环境地球化学研究室太原030024晋中学院化学化工学院山西晋中030600太原030024

【摘要】 采用显微热台对煤显微组分微粒进行热解,通过在线拍摄的显微图片能够直观揭示出煤粒热解时呈现的两个阶段——脱挥发分和半焦收缩.通过对显微图片的图像分析,获得了煤粒面积随温度变化的热解曲线.结果表明,半焦收缩过程由缓慢收缩、过渡收缩和快速收缩三个阶段构成,活化能、指前因子及速率常数皆随三个阶段依次增大,其原因在于各段的化学键断裂种类及其键能、生成的自由基碎片及缩聚反应存在不同特点.就半焦收缩而言,镜质组的速率常数大于惰质组;变质程度较低的神东煤及其显微组分的速率常数大于平朔煤及其对应显微组分,即前者显示出较强的半焦收缩反应性.

【Abstract】 The thermal behavior of maceral particles was investigated using the micro heating stage. The phenomena of devolatilization and semicoke contraction on pyrolysis of the particles were observed directly in the micro-picture taken online. The curve of the particle area which changed with increasing the temperature was obtained by means of image analysis on the micro-picture. The results of the above processes showed that three stages were involved in the process of semicoke contraction: slow contraction stage, transitional contraction stage, and rapid contraction stage. The values of the apparent activation energy, pre-exponential factor, and reaction rate constant might increase in the three stages as a result of different features shown by the chemical bond breakage types, its bond energy as well as the free radical pieces, and condensation reaction in each stage. In terms of semicoke contraction, the reaction rate constant of vitrinite was bigger than that of inertinite; the reaction rate constants of ShenDong coal and its macerals with lower metamorphic grade were bigger than those of PingShuo coal and its corresponding macerals, namely, the former had better semicoke contraction reactivity.

【基金】 国家自然科学基金(90410018,40772097,40572094);教育部创新团队发展计划(IRT0517);教育部新世纪优秀人才支持计划(NCET-05-0267);山西省高校科技研究开发项目(2007152)资助
  • 【文献出处】 物理化学学报 ,Acta Physico-Chimica Sinica , 编辑部邮箱 ,2008年04期
  • 【分类号】TQ530.2
  • 【被引频次】12
  • 【下载频次】567
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