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Insights into pyrolysis and co-pyrolysis of biomass and polystyrene: Thermochemical behaviors, kinetics and evolved gas analysis

机译:深入了解生物质和聚苯乙烯的热解和共热解:热化学行为,动力学和逸出气体分析

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摘要

The purpose of this study was to investigate the effect on polystyrene (PS) during co-pyrolysis with biomass through thermal decomposition. The model-free iso-conversional methods (Kissinger, Friedman, Flynn-WallOzawa, Kissinger-Akahira-Sunose, Starink and Vyazovkin) were adopted to calculate activation energy of the pyrolysis and co-pyrolysis process of two biomass samples (walnut shell: WS and peach stones: PST) with PS. It is found that biomass blending to PS decreased activation energy values and resulted in multi-step reaction mechanisms. Furthermore, changes in the evolution profiles of methyl, water, methoxy, carbon dioxide, benzene and styrene was monitored through evolved gas analysis via TGA/FT-IR and TGA/MS. Detection of temperature dependent release of volatiles indicated the differences occur as a result of compositional differences of biomass.
机译:这项研究的目的是研究通过热分解与生物质共热解过程中对聚苯乙烯(PS)的影响。采用无模型的等转换方法(Kissinger,Friedman,Flynn-WallOzawa,Kissinger-Akahira-Sunose,Starink和Vyazovkin)来计算两个生物质样品(核桃壳:WS)的热解和共热解过程的活化能。和桃子石:PST)和PS。发现生物质与PS的混合降低了活化能值,并导致了多步反应机理。此外,通过TGA / FT-IR和TGA / MS的逸出气体分析,可以监测甲基,水,甲氧基,二氧化碳,苯和苯乙烯的逸出曲线变化。温度依赖性释放挥发物的检测表明差异是由于生物质组成差异而发生的。

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