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大气中多工业热工艺排放的多氯联苯。

Atmospheric emission of polychlorinated biphenyls from multiple industrial thermal processes.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, P.O. Box 2871, Beijing 100085, China.

出版信息

Chemosphere. 2013 Mar;90(9):2453-60. doi: 10.1016/j.chemosphere.2012.11.008. Epub 2012 Dec 13.

Abstract

In this study, field measurements were conducted to estimate and characterize the atmospheric emission levels and profiles of polychlorinated biphenyls (PCBs) from multiple industrial thermal processes. The emission levels and profiles of PCBs from five types of thermal processes at twenty-three plants were studied and compared with eight processes reported in our previous studies. Correlation analysis was preformed to identify a marker congener for emission of ΣPCB. A significant correlation was observed between congener CB-118 and ΣPCB (R(2)=0.65 and p<0.01), which suggests that CB-118 is a good marker congener for emission of ΣPCB. The profiles of PCBs emitted from the thirteen thermal processes were compared, and this information could be used for studying source-receptor relationships and identifying the specific sources of PCBs. To prioritize the sources for control, the concentrations of PCBs from thirteen industrial thermal sources were compared. The PCB concentrations from secondary zinc smelting and thermal wire reclamation were about one to three order magnitude higher than those of other sources, which suggests that these two sources be given priority in PCB source control. Finally, the atmospheric emission factors of PCBs from the thirteen industrial sources were summarized, and these data will be useful for developing an integrated emission inventory of PCBs.

摘要

在这项研究中,进行了现场测量,以估计和描述来自多种工业热过程的多氯联苯(PCBs)的大气排放水平和分布。研究并比较了 23 家工厂的 5 种热工艺和我们之前研究报告的 8 种工艺的 PCB 排放水平和分布。进行了相关分析,以确定ΣPCB 排放的标记同系物。发现同系物 CB-118 和ΣPCB 之间存在显著相关性(R(2)=0.65 和 p<0.01),这表明 CB-118 是ΣPCB 排放的良好标记同系物。比较了来自 13 种热工艺的 PCBs 排放分布,这些信息可用于研究源-受体关系和识别 PCBs 的具体来源。为了优先控制污染源,比较了来自 13 种工业热污染源的 PCBs 浓度。来自二次锌冶炼和热电线回收的 PCB 浓度比其他来源高约 1 到 3 个数量级,这表明这两个来源应优先考虑进行 PCB 源控制。最后,总结了来自 13 种工业源的 PCBs 的大气排放因子,这些数据将有助于开发 PCBs 的综合排放清单。

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