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Analytical methods for PCBs and organochlorine pesticides in environmental monitoring and surveillance: a critical appraisal

机译:环境监测和监视中多氯联苯和有机氯农药的分析方法:关键评估

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摘要

Analytical methods for the analysis of polychlorinated biphenyls (PCBs) and organochlorine pesticides (OCPs) are widely available and are the result of a vast amount of environmental analytical method development and research on persistent organic pollutants (POPs) over the past 30–40 years. This review summarizes procedures and examines new approaches for extraction, isolation, identification and quantification of individual congeners/isomers of the PCBs and OCPs. Critical to the successful application of this methodology is the collection, preparation, and storage of samples, as well as specific quality control and reporting criteria, and therefore these are also discussed. With the signing of the Stockholm convention on POPs and the development of global monitoring programs, there is an increased need for laboratories in developing countries to determine PCBs and OCPs. Thus, while this review attempts to summarize the current best practices for analysis of PCBs and OCPs, a major focus is the need for low-cost methods that can be easily implemented in developing countries. A “performance based” process is described whereby individual laboratories can adapt methods best suited to their situations. Access to modern capillary gas chromatography (GC) equipment with either electron capture or low-resolution mass spectrometry (MS) detection to separate and quantify OCP/PCBs is essential. However, screening of samples, especially in areas of known use of OCPs or PCBs, could be accomplished with bioanalytical methods such as specific commercially available enzyme-linked immunoabsorbent assays and thus this topic is also reviewed. New analytical techniques such two-dimensional GC (2D-GC) and “fast GC” using GC–ECD may be well-suited for broader use in routine PCB/OCP analysis in the near future given their relatively low costs and ability to provide high-resolution separations of PCB/OCPs. Procedures with low environmental impact (SPME, microscale, low solvent use, etc.) are increasingly being used and may be particularly suited to developing countries.Electronic supplementary materialSupplementary material is available in the online version of this article at and is accessible for authorized users.
机译:分析多氯联苯(PCBs)和有机氯农药(OCP)的分析方法已广泛使用,并且是过去30-40年间大量环境分析方法开发和持久性有机污染物(POPs)研究的结果。这篇综述总结了程序,并研究了提取,分离,鉴定和定量PCB和OCP的单个同源物/异构体的新方法。成功应用此方法的关键是样品的收集,制备和存储,以及特定的质量控制和报告标准,因此也将对这些进行讨论。随着《关于持久性有机污染物的斯德哥尔摩公约》的签署和全球监测计划的制定,发展中国家对确定多氯联苯和OCP的实验室的需求日益增加。因此,尽管本综述试图总结分析PCB和OCP的当前最佳实践,但主要关注的是需要在发展中国家易于实施的低成本方法。描述了“基于性能”的过程,由此各个实验室可以采用最适合其情况的方法。使用具有电子捕获或低分辨率质谱(MS)检测功能来分离和定量OCP / PCB的现代毛细管气相色谱(GC)设备至关重要。但是,样品的筛选,尤其是在已知使用OCP或PCB的领域中,可以通过生物分析方法(例如特定的市售酶联免疫吸附测定)来完成,因此也对此主题进行了综述。二维GC(2D-GC)和使用GC–ECD的“快速GC”等新的分析技术,由于其相对较低的成本和提供较高的检测能力,可能在不久的将来非常适合常规PCB / OCP分析中的广泛使用。 PCB / OCP的高分辨率分离。具有较低环境影响的程序(SPME,微量,低溶剂用量等)正在越来越多地使用,并且可能特别适合于发展中国家。电子补充材料补充材料可从本文的在线版本获得,授权用户可以使用。

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