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Comprehensive kinetic study of thermal degradation of polyvinylchloride (PVC)

机译:聚氯乙烯热降解的综合动力学研究(PVC)

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摘要

The plastic waste accumulation has been increasing and a solution other than landfilling is required. Due to the high cost of recycling, thermal treatment could be an option. However, the existence of polyvinyl chloride (PVC) would release hydrochloric acid which would cause emission problems as well as damage to the reactor systems. The thermal degradation of PVC has been studied over the years. However, the mechanism of the PVC thermal degradation is not fully developed. Specifically, the mechanism of the PVC thermal degradation at medium temperatures, which is more practical for industries, is still lacking. A degradation temperature of 300 °C was used to study the dehydrochlorination behavior of PVC. A rather comprehensive mechanism with four consecutive reactions has been developed based on the micro-pyrolysis experiments and has been validated and proved by predicting the mass loss, chlorine content, heat content and elemental composition with high precision experimental data in different reactors with/without heat transfer coupling.
机译:塑料废物积累一直在增加,需要除填埋场外的溶液。由于回收成本高,热处理可能是一种选择。然而,聚氯乙烯(PVC)的存在将释放盐酸,这会导致排放问题以及反应器系统的损坏。多年来研究了PVC的热降解。然而,PVC热降解的机制不完全开发。具体地,仍然缺乏介质温度下的PVC热降解的机理,这对行业更加实用。使用300℃的降解温度来研究PVC的脱氯化氯化行为。已经基于微热解实验开发了具有四种连续反应的相当综合的机制,并通过预测具有高精度的大量实验数据,在不同的反应器中通过/不热预测大量损失,氯含量,热含量和元素组合物来验证和证明转移耦合。

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