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Physicochemical, kinetic and energetic investigation of coal-biomass mixture pyrolysis

机译:煤-生物质混合物热解的理化,动力学和能量研究

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The pyrolyzing behavior of solid fuel mixtures was quantified from the physicochemical, kinetic and energetic perspectives using scanning electron microscope and simultaneous thermogravimetric analyzer. The effects of water leaching on biomass pyrolysis and coal-biomass co-pyrolysis were investigated simultaneously from all three perspectives and the behaviors were cross-examined. The water leaching of the biomass significantly decreased the inorganic content and reduced its char yield. The activation energy for the leached biomass was calculated to be higher than the untreated counterparts, and the heat of pyrolysis of biomass increased on water leaching due to mitigation of secondary reactions. The co-pyrolysis of coal and biomass fuel mixtures exhibited a weighted additive physicochemical, kinetic and energetic behavior for the conditions tested in this study. It was shown that the interactions between leached biomass and coal during co-pyrolysis were minimal by successful simulation of co-pyrolysis kinetics using the individual kinetic parameters of coal and biomass pyrolysis reactions. The energetic properties of the fuel samples, viz. heat of pyrolysis and heat of gasification, were calculated on per unit volatile mass basis using a pyrolysis mathematical model. It was demonstrated that these energetic properties were additive in nature for coal and leached biomass co-pyrolysis.
机译:使用扫描电子显微镜和同时热重分析仪从理化,动力学和能量方面对固体燃料混合物的热解行为进行了定量。从三个角度同时研究了水浸出对生物质热解和煤-生物质共热解的影响,并对其行为进行了交叉检验。生物质的水浸显着降低了无机物含量并降低了焦炭产量。计算出浸出的生物质的活化能高于未处理的对应物,并且由于减轻了次级反应,浸出水后生物质的热解热增加。在这项研究中测试的条件下,煤和生物质燃料混合物的共热解表现出加权的物理化学,动力学和高能行为。通过使用煤和生物质热解反应的各个动力学参数成功地模拟了共热解动力学,结果表明,共热解过程中浸出的生物质与煤之间的相互作用极小。燃料样品的能量特性,即。使用热解数学模型以每单位挥发性质量为基础计算热解热和气化热。结果表明,这些高能性质对于煤和浸出的生物质共热解具有本质上的累加性。

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