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首页> 外文期刊>Fuel Processing Technology >Analysis of pyrolysis and asification reactions of hydrothermally and supercritically upgraded low-rank coal by using a new distributed activation energy model
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Analysis of pyrolysis and asification reactions of hydrothermally and supercritically upgraded low-rank coal by using a new distributed activation energy model

机译:利用新的分布活化能模型分析水热和超临界升级低品位煤的热解和同化反应

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摘要

Hydrothermal water treatments and supercritical (SC) water treatments of a lignite were performed to examine the feasibility of upgrading low-rank coals. The treatment below 4000C was found to be effective enough to keep high gasification reactivity at high temperature, as well as to suppress spontaneous combustion. The pyrolysis and gasification behaviors of raw and pretreated coals were examined by thermogravimetry (TG). The kinetic analysis was carried out based on a new distributed activation energy model (DAEM) presented by Miura [K. Miura, Energy & Fuels, (12), 864—869 (1998).]. According to this method, thermogravimetric curves measured at two or more different heating rates were needed to obtain the activation energy distribution function f( E) of a given coal sample. It was found that in the case of pyrolysis, the peak values of f( E) curves for upgraded coal samples are nearly 300 kJ/mol, whereas, the peak value of f(E) curve for their parent coal is about 200 kJ/mol. In the case of gasification, where only single reactions occur, the application of this new DAEM can give the changes of activation energy during reaction. Some interesting results occur,which may hint at some changes in the rate-controlling step of reaction or in the physical structure of coal during gasification.
机译:进行了褐煤的热水处理和超临界(SC)水处理,以检验升级低品位煤的可行性。发现低于4000℃的处理足以在高温下保持高的气化反应性并抑制自燃。通过热重分析(TG)检查了原煤和预处理过的煤的热解和气化行为。动力学分析是基于Miura提出的新的分布活化能模型(DAEM)进行的。 Miura,《能源与燃料》,(12),864-869(1998)。根据该方法,需要在两个或多个不同的加热速率下测得的热重曲线,以获得给定煤样品的活化能分布函数f(E)。发现在热解的情况下,升级煤样品的f(E)曲线的峰值接近300 kJ / mol,而其母煤的f(E)曲线的峰值约为200 kJ / mol。摩尔在气化的情况下,仅发生单个反应,这种新的DAEM的应用可以在反应过程中改变活化能。发生一些有趣的结果,这可能暗示在气化过程中反应的速率控制步骤或煤的物理结构发生了一些变化。

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