用分析和计算方法测定未加工pvc和pvc废料的热解降解动力学

M.J.P Slapak, J.M.N van Kasteren, A.A.H Drinkenburg
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引用次数: 52

摘要

在氮气和水蒸气饱和的氮气气氛中,记录了原生聚氯乙烯和废聚氯乙烯在不同加热速率下的热重曲线,以确定降解动力学。未加工聚氯乙烯的降解曲线表现为两个质量损失较大的阶段。将弗里德曼方法应用于实验数据证明是不准确的,不能明确地确定动力学。动力学参数的数值测定可以更好地描述数据。用两种模型拟合了一组纯pvc的降解曲线。两种模型均具有良好的再现性。向大气中添加水蒸气的影响仅限于非常高的温度。硬质pvc废料的降解曲线显示,在950 ~ 1150 K之间有额外的质量损失,可能是由石灰石转化引起的。所建立的硬质pvc废弃物降解模型与实验曲线拟合较好。结果表明,pvc废管材样品的异质性太大,无法用一组参数拟合降解曲线。
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Determination of the pyrolytic degradation kinetics of virgin-PVC and PVC-waste by analytical and computational methods

Thermogravimetric curves of virgin- and waste-PVC in an atmosphere of nitrogen and nitrogen saturated with water vapour were recorded at several heating rates to determine degradation kinetics. The degradation curves of virgin-PVC showed two stages of considerable mass loss. Application of the Friedman method to the experimental data proved to be too inaccurate to determine the kinetics unambiguously. Numerical determination of the kinetics parameters resulted in a better description of the data. Two models were fitted to a set of degradation curves of virgin-PVC. Both models showed good reproducibility. The effects of addition of water vapour to the atmosphere were limited to very high temperatures. The degradation curves of rigid PVC-waste showed an additional mass loss between 950 and 1150 K, presumably caused by limestone conversion. The model proposed to describe the degradation of rigid PVC-waste fitted the experimental curves well. Samples from PVC-waste pipes proved to be too heterogeneous to fit the degradation curves with one set of parameters.

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