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Comparison of a novel passive sampler to standard water-column sampling for organic contaminants associated with wastewater effluents entering a New Jersey stream

机译:将新型被动采样器与进入新泽西河流的废水排放相关的有机污染物的标准水柱采样进行比较

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摘要

Four water samples collected using standard depth and width water-column sampling methodology were compared to an innovative passive, in situ, sampler (the polar organic chemical integrative sampler or POCIS) for the detection of 96 organic wastewater-related contaminants (OWCs) in a stream that receives agricultural, municipal, and industrial wastewaters. Thirty-two OWCs were identified in POCIS extracts whereas 9–24 were identified in individual water-column samples demonstrating the utility of POCIS for identifying contaminants whose occurrence are transient or whose concentrations are below routine analytical detection limits. Overall, 10 OWCs were identified exclusively in the POCIS extracts and only six solely identified in the water-column samples, however, repetitive water samples taken using the standard method during the POCIS deployment period required multiple trips to the sampling site and an increased number of samples to store, process, and analyze. Due to the greater number of OWCs detected in the POCIS extracts as compared to individual water-column samples, the ease of performing a single deployment as compared to collecting and processing multiple water samples, the greater mass of chemical residues sequestered, and the ability to detect chemicals which dissipate quickly, the passive sampling technique offers an efficient and effective alternative for detecting OWCs in our waterways for wastewater contaminants.
机译:将使用标准深度和宽度水柱采样方法收集的四个水样与一个创新的被动式原位采样器(极性有机化学综合采样器或POCIS)进行比较,以检测废水中的96种有机废水相关污染物(OWC)。接收农业​​,市政和工业废水的水流。在POCIS提取物中鉴定出32种OWC,而在各个水柱样品中鉴定出9–24种,这证明POCIS可用于鉴定瞬态或浓度低于常规分析检测极限的污染物。总体而言,仅在POCIS提取物中鉴定出10个OWC,而在水柱样品中仅鉴定出6个,但是,在POCIS部署期间使用标准方法采集的重复水样需要多次前往采样点,且数量增加样本以存储,处理和分析。由于与单独的水柱样品相比,在POCIS提取物中检测到的OWC数量更多,因此与收集和处理多个水样品相比,单次部署更容易,螯合的化学残留物质量更高,为了检测快速消散的化学物质,被动采样技术为检测我们水道中的OWC中的废水污染物提供了一种有效的替代方法。

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