State Key Laboratory of Organic Geochemistry, Guangdong Key Laboratory of Environmental Resources Utilization and Protection, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China.
Environ Pollut. 2011 Dec;159(12):3529-35. doi: 10.1016/j.envpol.2011.08.014. Epub 2011 Aug 25.
Gas samples and total suspended particle during work and off work time were investigated on-site and off-site electronic waste dismantling workshop (I- and O-EWDW), then compared with plastic recycling workshop (PRW) and waste incineration plant (WIP). TSP concentrations and total PBDE were 0.36-2.21 mg/m(3) and 27-2975 ng/m(3) at different workshops, respectively. BDE-47, -99, and -209 were major ∑PBDE congeners at I-EWDW and WIP, while BDE-209 was only dominant congener in PRW and control sites during work time and all sites during off work time. The gas-particle partitioning result was well correlated with the subcooled liquid vapor pressure for all samples, except for WIP and I-EDWD, at park during work time, and residential area during off work time. The predicted urban curve fitted well with measured φ values at O-DEWD during work time, whereas it was slightly overestimated or underestimated for others. Exposure assessment revealed the highest exposure site was I-EDWD.
对现场和场外电子废物拆解车间(I- 和 O-EWDW)、塑料回收车间(PRW)和垃圾焚烧厂(WIP)的工作和非工作时间的气体样本和总悬浮颗粒物进行了现场调查,并与塑料回收车间(PRW)和垃圾焚烧厂(WIP)进行了比较。TSP 浓度和总 PBDE 分别为 0.36-2.21mg/m(3)和 27-2975ng/m(3)在不同的车间。BDE-47、-99 和 -209 是 I-EWDW 和 WIP 中主要的∑PBDE 同系物,而 BDE-209 仅在 PRW 和对照点工作时间和所有地点非工作时间占主导地位。除 WIP 和 I-EDWD 在工作时间的公园以及非工作时间的居民区外,所有样品的气体-颗粒分配结果与过冷液体蒸气压的相关性均良好。预测的城市曲线在工作时间的 O-EDWD 与实测φ值拟合良好,而其他地区则略有高估或低估。暴露评估显示,暴露程度最高的地点是 I-EDWD。