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首页> 外文期刊>Chemosphere >Time integrative sampling properties of Speedisk and silicone rubber passive samplers determined by chemical analysis and in vitro bioassay testing
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Time integrative sampling properties of Speedisk and silicone rubber passive samplers determined by chemical analysis and in vitro bioassay testing

机译:通过化学分析和体外生物测定试验确定的快速和硅橡胶无源采样器的时间一体化采样性能

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摘要

Compared to grab samples, passive samplers have the advantage that they sample over a longer time period and can detect lower compound concentrations in water quality monitoring campaigns. To allow the determination of time-weighted average concentrations, however, sampler uptake should remain linear in time over the entire sampling period. Therefore, the time integrative or linear uptake properties of adsorption-based Speedisks and partitioning-based silicone rubber samplers were assessed with respect to chemically analyzed single compounds and measured bioactivity in in vitro bioassays. Both sampler types were deployed in consecutive and overlapping time series in a WTTP effluent and in the river Meuse up to 105 days. Extracts were chemically analyzed for PCBs, PAHs and pesticides and tested in the Aliivibrio fischeri and DR-LUC bioassays. Speedisks showed time integrative sampling for the detected pesticides as well as for bioassay responses at both sampling locations for the entire sampling period. The silicone rubber samplers showed poor linear uptake in time for the unknown compounds causing bioassay responses. The bioassay results indicate that conversion of a bioassay response to a passive sampler extract into a time-weighted average bioactivity per liter water seems justified for Speedisks, confirming that concentrations in the samplers correspond to a single volume of sampled water for all compounds. The bioassay results also indicate that a similar conversion for silicone rubber extracts should be interpreted with caution. In principle, it is actually impossible, because the concentration of each compound contributing to the bioassay response corresponds to a different sampled water volume. (C) 2020 Elsevier Ltd. All rights reserved.
机译:与抓取样品相比,被动采样器具有它们在更长的时间段内进行采样的优点,并且可以检测水质监测运动中的较低的复合浓度。然而,为了允许测定时间加权的平均浓度,采样器摄取应在整个采样周期内及时保持线性。因此,基于吸附的快速和分配的硅橡胶取样器的时间整合或线性摄取性能被评估为化学分析的单一化合物并在体外生物测定中测量的生物活性。两种采样器类型都在连续和重叠的时间序列中部署在WTTP流出物中,并在河流中持续到105天。化学分析了PCB,PAH和杀虫剂的提取物,并在Aliivibrio Fischeri和Dr-Luc Bioassays中进行测试。快速表明,对于检测到的杀虫剂以及在整个采样期间的采样位置处的生物测定应答的时间集成采样。硅橡胶采样器显示出较低的线性摄取,用于导致生物测定应答的未知化合物。生物测定结果表明,对于快速来说,生物测定响应对被动采样器提取物的生物测定响应转化为每升的时间加权,似乎是用于快速的,确认采样器中的浓度对应于所有化合物的单一体积的取样水。生物测定结果还表明,硅橡胶提取物的类似转化应谨慎地解释。原则上,实际上是不可能的,因为每个化合物的浓度贡献对生物测定应答的浓度对应于不同的取样水体积。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第11期|127498.1-127498.11|共11页
  • 作者单位

    Deltares Utrecht Netherlands;

    Deltares Utrecht Netherlands|Masaryk Univ Fac Sci Ctr RECETOX Kamenice 753-5 Brno 62500 Czech Republic;

    TNO Environm Modelling Sensing & Anal Utrecht Netherlands;

    Natl Inst Publ Hlth & Environm RIVM Bilthoven Netherlands|DdZ Ecotox Odijk Netherlands;

    Vrije Univ Amsterdam Dept Environm & Hlth E&H Amsterdam Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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