Kinetic study of wood pyrolysis in presence of metal halides

Vladimir A. Beliy, E. Udoratina
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引用次数: 10

Abstract

The purpose of this work was to study the kinetics of wood pyrolysis in the presence of inorganic salts, representatives of classes of alkali and alkaline earth metal halides (NaCl, KCl, KBr, CaCl2, BaCl2·2H2O) and Lewis acids (AlCl3·6H2O, FeCl3·6H2O, CuCl2, CuBr2, ZnCl2·1.5H2O, NiCl2·6H2O, SnCl2·2H2O) using TG-DSC. The activity of these catalysts was estimated by the temperature of the beginning of pyrolysis, charcoal yield and kinetic parameters, such as energy of activation and reaction order. Using the Lewis acids as catalysts for pyrolysis leads to a decrease in the temperature of the process beginning and the activation energy. In the presence of other catalysts activation energy does not significantly change. The increase of a seeming reaction order in the presence of Lewis acids possibly is a consequence of complication of the thermodestruction mechanism, with the appearance of new parallel competing stages.
金属卤化物存在下木材热解动力学研究
本研究的目的是利用TG-DSC研究木材在无机盐、碱金属卤化物(NaCl、KCl、KBr、CaCl2、BaCl2·2H2O)和路易斯酸(AlCl3·6H2O、FeCl3·6H2O、CuCl2、CuBr2、ZnCl2·1.5H2O、NiCl2·6H2O、SnCl2·2H2O)存在下的热解动力学。通过热解起始温度、炭产率和活化能、反应顺序等动力学参数来评价催化剂的活性。采用Lewis酸作为催化剂,可以降低热解起始温度和活化能。在其它催化剂的存在下,活化能没有明显变化。在路易斯酸的存在下,表面上反应级数的增加可能是热破坏机制复杂化的结果,出现了新的平行竞争阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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