CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian, 116023, China.
University of Chinese Academy of Sciences , Beijing 100049, China.
Environ Sci Technol. 2017 Aug 15;51(16):9005-9012. doi: 10.1021/acs.est.7b01965. Epub 2017 Jul 25.
Chlorinated paraffin (CP) mixture is a common additive in polyvinyl chloride (PVC) products as a plasticizer and flame retardant. During the PVC plastic life cycle, intentional or incidental thermal processes inevitably cause an abrupt release of short-chain CPs (SCCPs). In this study, the thermal processing of PVC plastics was simulated by heating PVC flooring at 100-200 °C in a chamber. The 1 h thermal treatment caused the release of 1.9-10.7% of the embedded SCCPs. A developed emission model indicated that SCCP release was mainly controlled by material-gas partitioning at 100 °C. However, release control tended to be subjected to material-phase diffusion above 150 °C, especially for SCCP congeners with shorter carbon-chain lengths. A cascade impactor (NanoMoudi) was used to collect particles of different sizes and gas-phase SCCPs. The elevated temperature resulted in a higher partition of SCCPs from the gas-phase to particle-phase. SCCPs were not strongly inclined to form aerosol particles by nucleation, and less present in the Aitken mode particles. Junge-Pankow adsorption model well fitted the partitioning of SCCPs between the gas-phase and accumulation mode particles. Inhalation exposure estimation indicated that PVC processing and recycling workers could face a considerably high risk for exposure to SCCPs.
氯化石蜡 (CP) 混合物是聚氯乙烯 (PVC) 制品中常用的添加剂,用作增塑剂和阻燃剂。在 PVC 塑料的生命周期中,有意或无意的热过程不可避免地会导致短链氯化石蜡 (SCCP) 的突然释放。在这项研究中,通过在室温和 100-200°C 下加热 PVC 地板来模拟 PVC 塑料的热加工过程。1 小时的热处理导致嵌入的 SCCP 释放了 1.9-10.7%。开发的排放模型表明,SCCP 的释放主要由 100°C 时的材料-气体分配控制。然而,释放控制在 150°C 以上趋于受到材料相扩散的影响,尤其是对于碳链较短的 SCCP 同系物。使用级联冲击器 (NanoMoudi) 收集不同粒径的颗粒和气态 SCCP。升高的温度导致 SCCP 从气相更多地分配到颗粒相。SCCP 不容易通过成核形成气溶胶颗粒,也较少存在于艾肯模式颗粒中。Junge-Pankow 吸附模型很好地拟合了 SCCP 在气相和积累模式颗粒之间的分配。吸入暴露评估表明,PVC 加工和回收工人可能面临相当高的接触 SCCP 的风险。