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Using SPMDs for monitoring hydrophobic organic compounds in urban river water in Korea compared with using conventional water grab samples

机译:使用SPMD监测韩国城市河水中的疏水性有机化合物,与使用常规水样相比

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摘要

We aimed to verify the effectiveness of semi-permeable membrane devices (SPMDs) for monitoring hydrophobic organic compounds, such as polychlorinated biphenyls (PCBs) and polybrominated diphenyl ethers (PBDEs), that are not easy to detect using conventional grab samples (because of their low concentrations), in water. We used SPMDs and grab samples to monitor PCBs and PBDEs upstream and downstream of a sewage treatment plant (STP) in the Suyeong River in Busan, Korea. Concentrations in three different phases (freely dissolved, apparently dissolved, and paniculate) were measured, to investigate the aquatic fate of PCBs and PBDEs. The freely dissolved (SPMD) concentrations were 2-3 times higher than the apparently dissolved and paniculate phase (grab sample) concentrations. No meaningful relationships were found between the total PCB and PBDE concentrations of the grab sample and SPMD sample because of the different partitioning behaviors and detection frequencies of the individual chemicals. However, the summed concentrations of specific PCB and PBDE congeners (that were abundant in all samples) in the grab and SPMD samples correlated well (r~2 = 0.7451 for PCBs 28 + 52 + 153, r~2 = 0.9987 for PBDEs 28 + 47 + 99). The PBDE concentrations measured using SPMDs decreased with increasing distance from the STP, but no apparent dilution effect was found in the grab samples. Our results show that SPMDs could be used to support grab sampling for specific chemicals, or to trace chemical sources (such as STPs) to the aquatic environment.
机译:我们旨在验证半渗透膜装置(SPMD)用于监测疏水性有机化合物(例如多氯联苯(PCB)和多溴联苯醚(PBDEs))的有效性,这些疏水性有机化合物难以使用常规抓取样品进行检测(因为它们的低浓度),在水中。我们使用SPMD和抓取样品来监测韩国釜山Suyeong河污水处理厂(STP)上游和下游的PCB和PBDE。测量了三个不同阶段(自由溶解,明显溶解和颗粒状)中的浓度,以研究多氯联苯和多溴二苯醚的水生生物。自由溶解(SPMD)浓度比表观溶解和颗粒相(抓样)浓度高2-3倍。由于各个化学品的分配行为和检测频率不同,因此在抓取样品和SPMD样品的PCB和PBDE的总浓度之间未发现有意义的关系。但是,抓取样品和SPMD样品中特定PCB和PBDE同系物的浓度(在所有样品中都丰富)的总和具有很好的相关性(对于PCB 28 + 52 + 153,r〜2 = 0.7451,对于PBDEs 28 +,r〜2 = 0.9987) 47 + 99)。使用SPMD测得的PBDE浓度随与STP距离的增加而降低,但在抓取样品中未发现明显的稀释作用。我们的结果表明,SPMD可用于支持对特定化学物质进行抓取采样,或用于追踪水生环境中的化学源(例如STP)。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|1537-1544|共8页
  • 作者单位

    Department of Civil and Environmental Engineering, Pusan National University, 63 Beon-gil, Busandaehak-ro, Ceumjeong-gu, Busan 609-735, Republic of Korea;

    Department of Civil and Environmental Engineering, Pusan National University, 63 Beon-gil, Busandaehak-ro, Ceumjeong-gu, Busan 609-735, Republic of Korea;

    Columbia Environmental Research Center (CERC), United States Geological Survey (USCS), Columbia, MO, USA;

    Marine Environment Research Division, National Fisheries Research & Development Institute (NFRDI), 216, Cijanghaeanro, Cijang-Eup, Gijang-Gun, Busan 619-705, Republic of Korea;

    Department of Civil and Environmental Engineering, Pusan National University, 63 Beon-gil, Busandaehak-ro, Ceumjeong-gu, Busan 609-735, Republic of Korea;

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

    SPMD; Passive water sampling; Dioxin-like HOCs; PCBs; PBDEs; STP;

    机译:SPMD;被动水采样;二恶英样HOC;PCB;多溴联苯醚;STP;

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