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Oxidative pyrolysis of solid fuels

机译:固体燃料的氧化热解

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This study addresses the dependence of the rate and pattern of pyrolysis of solid fuels from the oxidizing versus inert nature of the gaseous atmosphere. A selection of four solid fuels is considered in the study, namely two plastics (polyethylene and polyethylene terephthalate), one lignocellulosic material (Robinia Pseudoacacia) and a South African bituminous coal. Fuels are pyrolyzed in a thermogravimetric apparatus at different heating rates, under inert conditions or in the presence of oxygen at different concentration. Results indicate that the action exerted by oxygen during pyrolysis depends on the nature of the fuel and on the process conditions such as heating rate and oxygen concentration. Larger heating rates and larger oxygen concentration may indeed emphasize differences between inert and oxidative pyrolysis. Further analysis is directed to check the adequacy of a power low kinetic expression to describe the dependence of the rate of oxidative pyrolysis from the level of oxygen concentration.
机译:这项研究解决了固体燃料的热解速率和模式与气体气氛的氧化性质和惰性性质之间的关系。研究中考虑了四种固体燃料的选择,即两种塑料(聚乙烯和对苯二甲酸乙二酯),一种木质纤维素材料(Robinia Pseudoacacia)和一种南非烟煤。在热重设备中,在惰性条件下或在存在不同浓度氧气的情况下,以不同的加热速率将燃料热解。结果表明,热解过程中氧气所发挥的作用取决于燃料的性质以及工艺条件,例如加热速率和氧气浓度。更高的加热速率和更大的氧气浓度可能确实会强调惰性和氧化热解之间的差异。进一步的分析旨在检查低功率动力学表达是否足够,以描述氧化热解速率与氧气浓度水平的关系。

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