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聚氯乙烯材料在热处理下短链和中链氯化石蜡的释放机制

Release Mechanism of Short- and Medium-Chain Chlorinated Paraffins from PVC Materials under Thermal Treatment.

作者信息

Yu Haoran, Gao Yuan, Zhan Faqiang, Zhang Haijun, Chen Jiping

机构信息

CAS Key Laboratory of Separation Sciences for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, Liaoning 116023, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Environ Sci Technol. 2023 Feb 28;57(8):3095-3103. doi: 10.1021/acs.est.2c07548. Epub 2023 Feb 17.

Abstract

Chlorinated paraffins (CPs) as plasticizers are massively added to polyvinyl chloride (PVC) products, during whose life cycle CPs can be continuously released especially under thermal stress. In this study, a PVC cable sheath was adopted as a representative kind of PVC material to investigate the release behaviors of short- and medium-chain CPs (SCCPs and MCCPs) under thermal treatment. Release percentages of CPs with increasing temperature followed a Gaussian-like curve. At the unmolten stage of 80 °C, heating for 10 min caused 0.051% of added SCCPs and 0.029% of added MCCPs to be released. At the molten stage of 270 °C, accumulative release rates of SCCPs and MCCPs within 10 min were up to 30 and 14%, respectively. The developed emission model indicated that material-gas partitioning and internal diffusion simultaneously governed the release of CPs. During thermal treatment, the release of CPs could be remarkably affected by the thermal expansion of the PVC material and the formation of breakage and micropores. Congener group profiles of released CPs indicated a slight fractionation effect for SCCPs during the release process. Furthermore, the release risk of CPs from the whole life cycle of PVC products was preliminarily evaluated.

摘要

氯化石蜡(CPs)作为增塑剂被大量添加到聚氯乙烯(PVC)产品中,在其生命周期内,CPs会持续释放,尤其是在热应力作用下。在本研究中,采用PVC电缆护套作为一种代表性的PVC材料,研究短链和中链CPs(SCCPs和MCCPs)在热处理下的释放行为。CPs的释放百分比随温度升高呈类高斯曲线。在80℃未熔融阶段,加热10分钟导致0.051%的添加SCCPs和0.029%的添加MCCPs释放。在270℃熔融阶段,10分钟内SCCPs和MCCPs的累积释放率分别高达30%和14%。所建立的排放模型表明,材料-气体分配和内部扩散同时控制着CPs的释放。在热处理过程中,CPs的释放会受到PVC材料热膨胀以及破损和微孔形成的显著影响。释放的CPs同系物谱表明,SCCPs在释放过程中存在轻微的分馏效应。此外,还对PVC产品整个生命周期内CPs的释放风险进行了初步评估。

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