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Analysis of coals and biomass pyrolysis using the distributed activation energy model

机译:分布式活化能模型分析煤与生物质热解

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摘要

The thermal decomposition of coals and biomass was studied using thermogravimetric analysis with the distributed activation energy model. The integral method resulted in Datong bituminous coal conversions of 3-73% at activation energies of 100-486 kJ/mol. The corresponding frequency factors were e(19.5)-e(59.0) s(-1). Jindongnan lean coal conversions were 8-52% at activation energies of 100-462 kJ/mol. Their corresponding frequency factors were e(13.0)-e(55.8) s(-1). The conversion of corn-stalk skins were 1-84% at activation energies of 62-169 kJ/mol with frequency factors of e(10.8)-e(26.5) s(-1). Datong bituminous coal, Jindongnan lean coal and corn-stalk skins had approximate Gaussian distribution functions with linear In k(0) to E relationships. (C) 2008 Elsevier Ltd. All rights reserved.
机译:利用热重分析和分布活化能模型研究了煤和生物质的热分解。积分法在活化能为100-486 kJ / mol时,大同烟煤转化率为3-73%。相应的频率因子为e(19.5)-e(59.0)s(-1)。在活化能为100-462 kJ / mol的情况下,金东南地区的贫煤转化率为8-52%。它们对应的频率因子为e(13.0)-e(55.8)s(-1)。玉米茎皮的转化率为1-84%,活化能为62-169 kJ / mol,频率因子为e(10.8)-e(26.5)s(-1)。大同烟煤,金东南难燃煤和玉米秸秆皮具有近似的高斯分布函数,线性关系在In k(0)与E之间。 (C)2008 Elsevier Ltd.保留所有权利。

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