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An in-situ assessment of low-density polyethylene and silicone rubber passive samplers using methods with and without performance reference compounds in the context of investigation of polychlorinated biphenyl sources in rivers

机译:在调查河流中多氯联苯来源的背景下,使用有和没有性能参考化合物的方法对低密度聚乙烯和硅橡胶无源采样器进行现场评估

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摘要

This study firstly aims to assess the field performances of low density polyethylene (LDPE) and silicone rubber (SR) samplers for the monitoring of polychlorinated biphenyls (PCBs) in water regarding the uptake, the sampling rate (R_s) estimated by using performance reference compounds (PRCs) and the time-weighted average (TWA) concentrations. The second aim is to evaluate the efficiency of these samplers to investigate PCB sources (localization and imputation steps) using methods with and without PRCs to correct for the impact of water velocity on the uptake. Samplers spiked with PRCs were deployed in the outfalls of two PCB sources and at 8 river sites situated upstream and downstream of the outfalls. After 6 weeks, the uptake of PCBs in the linear phase was equivalent in LDPE and SR but 5 times lower in LDPE for PCBs approaching equilibrium. PRC-based Rs and water velocity (0.08 to 1.21 m s~(-1)) were well correlated in river (LDPE: R~2 = 0.91, SR: R~2 = 0.96) but not in outfalls (higher turbulences and potential release of PRCs to air). TWA concentrations obtained with SR were slightly higher than those obtained with LDPE (factor 1.4 to 2.6 in river) likely because of uncertainty in sampler-water partition coefficient values. Concentrations obtained through filtration and extraction of water samples (203 L) were 1.6 and 5.1 times higher than TWA concentrations obtained with SR and LDPE samplers, respectively. PCB sources could efficiently be localized when PRCs were used (increases of PCB loads in river) but the impact of high differences of water velocity was overcorrected (leading sometimes to false positives and negatives). Increases of PCB loads in the river could not be entirely imputed to the investigated sources (underestimation of PCBs contributing to the load increases). A method without PRCs (relationship between uptake and water velocity) appeared to be a good complementary method for LDPE.
机译:本研究首先旨在评估低密度聚乙烯(LDPE)和硅橡胶(SR)采样器的现场性能,以监测水中的多氯联苯(PCB)的吸收情况,并使用性能参考化合物估算采样率(R_s) (PRC)和时间加权平均(TWA)浓度。第二个目的是评估这些采样器使用带有和不带有PRC的方法来校正水速对吸收影响的方法调查PCB来源(定位和插补步骤)的效率。在两个多氯联苯来源的排污口以及排污口上游和下游的8个河流站点,部署了掺有PRCs的采样器。 6周后,线性PCB的吸收在LDPE和SR中相等,但在LDPE接近平衡时,LDPE的线性吸收降低5倍。基于PRC的Rs和水速(0.08至1.21 ms〜(-1))在河流中(LDPE:R〜2 = 0.91,SR:R〜2 = 0.96)具有良好的相关性,但在排污口(湍流和潜在释放较高)中却没有相关性的PRC播出)。用SR测得的TWA浓度要比用LDPE测得的TWA浓度稍高(河流中的1.4到2.6因子),这可能是由于采样器-水分配系数值的不确定性所致。通过过滤和萃取水样品(203升)获得的浓度分别比使用SR和LDPE采样器获得的TWA浓度高1.6倍和5.1倍。使用PRCs时,PCB来源可以有效地定位(河流中PCB负载的增加),但是水速高差的影响被过度校正(有时导致假阳性和阴性)。河中多氯联苯负荷的增加不能完全归因于所调查的来源(低估了多氯联苯对负荷增加的贡献)。不使用PRCS(吸收与水流速之间的关系)的方法似乎是LDPE的一种很好的补充方法。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|794-803|共10页
  • 作者单位

    School of Criminal Sciences, University of Lausanne, Batochime building, 1015 Lausanne, Switzerland;

    School of Criminal Sciences, University of Lausanne, Batochime building, 1015 Lausanne, Switzerland;

    Central Environmental Laboratory, Ecole Polytechnique Federale de Lausanne (EPFL), Station 2,1015 Lausanne, Switzerland;

    School of Criminal Sciences, University of Lausanne, Batochime building, 1015 Lausanne, Switzerland;

    Central Environmental Laboratory, Ecole Polytechnique Federale de Lausanne (EPFL), Station 2,1015 Lausanne, Switzerland;

    School of Criminal Sciences, University of Lausanne, Batochime building, 1015 Lausanne, Switzerland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LDPE; SR; PRC; PCB; Time-weighted average (TWA) concentration; Sampling rate (R_s);

    机译:LDPE;SR;中华人民共和国PCB;时间加权平均(TWA)浓度;采样率(R_s);

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