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Development of the performance reference compound approach for the calibration of 'polar organic chemical integrative sampler' (POCIS)

机译:开发用于“极性有机化学综合采样器”(POCIS)校准的性能参考化合物方法

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The purpose of the Water Framework Directive is to ensure the quality of the natural water across Europe. In this context, passive samplers have shown interesting capacities for the monitoring of contaminants in aqueous ecosystems. They allow the measurement of time-weighted average concentrations, overcoming many drawbacks of the spotsampling techniques known to be expensive and time consuming. However, application of passive samplers such as polar organic chemical integrative samplers (POCIS) for the monitoring of hydrophilic contaminants requires calibration to define compound sampling rates; key parameters to deduce the pollutant water concentrations from the amounts of pollutants accumulated by the device. Unfortunately, sampling rates are influenced by a range of environmental factors; in that respect, a question remains: is it not evident to know to what extent the sampling rates obtained in laboratory experiments can be used in field conditions? The problem can be solved for hydrophobic samplers by using performance reference compounds (PRCs), and an ongoing challenge for POCIS is focused on the improvement of the quantitative aspect of this family of samplers. In this study, potential PRCs have been selected during a specific experiment and their performance was tested in the laboratory under two hydrodynamic conditions. Results revealed a good proportionality between elimination rates of PRCs and sampling rates of chemicals. Afterwards, the application of the approach under environmental conditions was assessed by deploying POCIS in the Arcachon Bay (France) where POCIS-PRC-derived water concentrations appear to be close to the simultaneous grab-sampling results.
机译:《水框架指令》的目的是确保整个欧洲的天然水质量。在这种情况下,无源采样器显示出监测含水生态系统中污染物的有趣能力。它们可以测量时间加权平均浓度,克服了已知昂贵且费时的点采样技术的许多缺点。但是,将无源采样器(例如极性有机化学综合采样器(POCIS))用于监测亲水性污染物需要校准以定义化合物采样率。从设备累积的污染物量中推断出污染物水浓度的关键参数。不幸的是,采样率受一系列环境因素的影响。在这方面,仍然存在一个问题:不知道在实验室条件下可以在多大程度上在实验室条件下使用实验室采样率?通过使用性能参考化合物(PRC)可以解决疏水采样器的问题,而POCIS的持续挑战集中在改进该采样器系列的定量方面。在这项研究中,已在特定实验中选择了潜在的PRC,并在两种流体动力学条件下在实验室中测试了其性能。结果显示,PRC的消除率与化学物质的采样率之间具有很好的比例关系。之后,通过在法国阿尔卡雄湾部署POCIS评估了该方法在环境条件下的应用,该地区的POCIS-PRC衍生的水浓度似乎接近同时采集的结果。

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