首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Recycling of fibre-reinforced polymeric waste by pyrolysis: thermo-gravimetric and bench-scale investigations
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Recycling of fibre-reinforced polymeric waste by pyrolysis: thermo-gravimetric and bench-scale investigations

机译:通过热解回收纤维增强的聚合物废物:热重和台式研究

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A variety of composite wastes were pyrolysed in a bench-scale, static-bed reactor at 350-800℃. The samples under investigation included composites of polyesters, phenolic and epoxy resins, and polypropylene, reinforced with glass and/or carbon fibre. Both the product mass balance and gas composition were dependent on the polymer matrix, pyrolysis temperature and, at the higher temperatures studied, the decomposition of thermally unstable fillers present in several samples, most notably calcium carbonate. The waste samples were also pyrolysed in a thermo-gravimetric analyser and the Arrhenius kinetic parameters of the main decomposition reactions were calculated using a non-isothermal method. The thermo-grams are discussed in relation to the results of the bench-scale work and related to the decomposition behaviour of individual sample components.
机译:在台式规模的静态床反应器中,在350-800℃下热解各种复合废物。研究中的样品包括聚酯,酚醛和环氧树脂以及聚丙烯和玻璃纤维和/或碳纤维增强的复合材料。产物的质量平衡和气体组成均取决于聚合物基质,热解温度,并且在所研究的更高温度下,取决于几个样品中存在的热不稳定填料的分解,最主要的是碳酸钙。废物样品也在热重分析仪中热解,主要分解反应的Arrhenius动力学参数使用非等温方法计算。讨论了热谱图,涉及工作台规模的工作结果以及单个样品成分的分解行为。

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