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首页> 外文期刊>ACS Omega >Structure Characterization and CO2 Gasification Kinetics of Tri-High Coal-Chars Derived from High-Temperature Pyrolysis
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Structure Characterization and CO2 Gasification Kinetics of Tri-High Coal-Chars Derived from High-Temperature Pyrolysis

机译:高温热解法制备三高煤焦的结构表征和CO2气化动力学

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The pore structures and chemical composition features of two kinds of tri-high coal and their char samples prepared at a 750 °C temperature were analyzed. The results showed that the pyrolysis process has a great influence on the pore structure and the chemical composition of the char, and the influence is highly related to the coal ranks. The gasification kinetics of the two chars in pure CO2 atmosphere was also studied. The results indicated that the classical random pore model (RPM) cannot be used to explain the gasification kinetics throughout the char gasification. A modified RPM, considering the inhibitory effect of ash on the gasification kinetics, was adopted to estimate the kinetics, and the kinetic constants and the corresponding activation energies were calculated. It was observed that it was necessary to include the effect of ash on the variations of char structures during the char gasification to get an accurate description of reaction rate versus carbon conversion throughout the gasification of the tri-high coal chars.
机译:分析了两种三高煤及其在750°C下制备的炭样品的孔结构和化学组成特征。结果表明,热解过程对煤焦的孔隙结构和化学成分影响很大,且与煤级密切相关。还研究了两种焦炭在纯CO2气氛中的气化动力学。结果表明经典的随机孔模型(RPM)不能用来解释整个焦炭气化的气化动力学。考虑灰分对气化动力学的抑制作用,采用改进的RPM估算动力学,并计算了动力学常数和相应的活化能。观察到,有必要在焦炭气化过程中包括灰分对焦炭结构变化的影响,以准确描述整个三高煤焦气化过程中反应速率与碳转化率之间的关系。

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