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Use of PCB Congenera nd Homologue Analysis in Ecological Risk Assessment

机译:使用PCB同源物和生态风险评估的同源分析

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摘要

Common analytical methods for detecting and quantifying polychlorinated biphenyls (PCBs) in environmental samples rely on matching a pattern of peaks to a series of Aroclor standards. Due to differences in degradation, partitioning, and metabolism, the PCB pattern in environmental samples can be very different from the Aroclor standards, making identification and quantification of PCBs difficult. To identify an appropriate approach for PCB analyses, the U.S. Environmental Protection Agency Region 9, Biological Technical Assistance Group (BTAG), has considered PCB environmental fate and ecotoxicity, reviewed methods and laboratory capabilities for PCB analysis, and evaluated site-specific data from California and elsewhere. Results of this review indicate analytical methods for routine measurement of specific PCB congeners are currently available, and are cost-effective in comparison with Aroclor-based methods. Accordingly, BTAG has developed a core list of congeners and a phased approach for PCB congener-specific analysis in ecological risk assessments.
机译:在环境样品中检测和定量多氯联苯(PCB)的常见分析方法依赖于匹配峰的峰值与一系列芳烃标准品。由于降解,分区和新陈代谢的差异,环境样品中的PCB图案可以与芳烃标准非常不同,使得PCB的识别和定量困难。为了鉴定PCB分析适当的方法,美国环保局第九区,生物技术援助小组(BTAG),已经考虑PCB环境归宿和生态毒性,审查方法和PCB分析实验室的能力,并评估特定地点从加利福尼亚数据和其他地方。该综述结果表明目前可获得特定PCB同源物的常规测量的分析方法,与基于Aroclor的方法相比,具有成本效益。因此,BTAG开发了一种核心核心核心列表和生态风险评估中PCB同学分析的序列方法。

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