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TG-FTIR and Py-GC/MS study on pyrolysis mechanism and products distribution of waste bicycle tire

机译:TG-FTIR和Py-GC / MS研究废旧自行车轮胎的热解机理和产物分布

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摘要

Pyrolysis of waste tire is attracting widespread interest recently because of the great potential in waste valorization treatment. In this study, the thermal decomposition behavior, pyrolysis mechanism and products distribution of waste bicycle tire were investigated by means of TG-FTIR and Py-GC/MS. According to the TG results, two main pyrolysis stages of waste bicycle tire were observed, which were considered as the decomposition of rubber (285-531 degrees C) and further pyrolysis of pyrolytic products (663-847 degrees C), respectively. The volatiles release characteristics and FTIR spectrum at different temperatures exhibited good consistency with pyrolysis behavior. A detail information of pyrolysis products was analyzed by Py-GC/MS, which mainly include gaseous, alkenes and aromatics. The pyrolysis mechanism of waste bicycle tire was belong to free radical reaction, and the possible further pyrolysis pathway of D-limonene and styrene was also presented. Moreover, the products distribution under different pyrolysis final temperatures and heating rates conditions were summarized. Thus, this study could enhance our understanding on more specific details for the pyrolysis process of waste tire to some extent.
机译:由于废轮胎的增值处理的巨大潜力,废轮胎的热解最近引起了广泛的关注。利用TG-FTIR和Py-GC / MS对废旧自行车轮胎的热分解行为,热解机理和产物分布进行了研究。根据TG结果,观察到自行车废轮胎的两个主要热解阶段,分别被认为是橡胶的分解(285-531摄氏度)和热解产物的进一步热解(663-847摄氏度)。不同温度下的挥发物释放特性和FTIR光谱与热解行为表现出良好的一致性。通过Py-GC / MS分析了热解产物的详细信息,主要包括气态,烯烃和芳烃。废旧自行车轮胎的热解机理属于自由基反应,并提出了D-柠檬烯和苯乙烯可能的进一步热解途径。此外,总结了在不同热解最终温度和加热速率条件下的产物分布。因此,这项研究可以在某种程度上增强我们对废轮胎热解过程更具体细节的理解。

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