State Key Laboratory of Organic Geochemistry , Guangzhou Institute of Geochemistry , Chinese Academy of Sciences, Guangzhou 510640 , China.
College of Environmental and Resource Sciences , Zhejiang University , Hangzhou 310058 , China.
Environ Sci Technol. 2019 Apr 2;53(7):3464-3470. doi: 10.1021/acs.est.8b07286. Epub 2019 Mar 15.
Although polychlorinated biphenyls (PCBs) have been banned for several decades, they are still detected with elevated levels due to their unintentional production from combustion and industrial thermal processes (UP-PCBs). To investigate the composition and current levels of UP-PCBs and understand which sources are controlling PCB burdens in ambient atmosphere, air samples were collected from August 2012 to August 2015 at a background site in east China. An unexpected high abundance of PCB47+48+75 was observed to be the predominant congener with an average concentration of 786 ± 637 pg/m. It accounted for 48 ± 16% of ΣPCBs, followed by PCB51 (10 ± 4%), PCB11 (8 ± 6%), and PCB68 (7 ± 3%). Seasonal variations with high levels in summer and lowest levels in winter were observed for PCB47+48+75, 51, and 68. These tetrachlorobiphenyl congeners were strongly correlated with temperature ( r > 0.7), suggesting the control of temperature-dependent volatilization processes from contaminated surfaces. The decreased occurrence of PCB47+48+75, 51, and 68 in commercial products and their negative correlations (| r| < 0.35) with polycyclic aromatic hydrocarbon (PAHs) and weak correlation with other PCB congeners suggested unique unintentional sources that differ from combustion and industrial thermal processes or pigment, such as the use of polymer sealant, for PCB47+48+75, 51, and 68 in the ambient air.
尽管多氯联苯 (PCBs) 已被禁用几十年,但由于燃烧和工业热过程中的无意生产 (UP-PCBs),仍能检测到其含量升高。为了研究 UP-PCBs 的组成和当前水平,并了解哪些来源控制着环境大气中的 PCB 负荷,我们于 2012 年 8 月至 2015 年 8 月在华东一个背景站点采集了空气样本。出人意料的是,观察到 PCB47+48+75 的丰度很高,是主要的同系物,平均浓度为 786±637pg/m。它占ΣPCBs 的 48±16%,其次是 PCB51(10±4%)、PCB11(8±6%)和 PCB68(7±3%)。PCB47+48+75、51 和 68 的季节性变化表现为夏季水平高,冬季水平低。这些四氯联苯同系物与温度呈强相关性(r>0.7),表明受污染表面的温度依赖性挥发过程受到控制。商业产品中 PCB47+48+75、51 和 68 的出现频率降低,与多环芳烃(PAHs)呈负相关(|r|<0.35),与其他 PCB 同系物的相关性较弱,表明存在与燃烧和工业热过程或颜料不同的独特无意来源,例如在环境空气中使用聚合物密封剂来生产 PCB47+48+75、51 和 68。