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PAH Accessibility in Particulate Matter from Road-Impacted Environments

机译:受道路影响的环境中PAH在特定问题上的可访问性

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摘要

Snowmelt, surface runoff, or stormwater releases in urban environments can result in significant discharges of particulate matter-bound polycyclic aromatic hydrocarbons (PAHs) into aquatic environments. Recently, more-specific activities such as road-tunnel washing have been identified as contributing to contaminant load to surface waters. However, knowledge of PAH accessibility in particulate matter (PM) of urban origin that may ultimately be released into urban surface waters is limited. In the present study, we evaluated the accessibility of PAHs associated with seven distinct (suspended) particulate matter samples collected from different urban sources. Laboratory-based infinite sink extractions with silicone rubber (SR) as the extractor phase demonstrated a similar pattern of PAH accessibility for most PM samples. Substantially higher accessible fractions were observed for the less-hydrophobic PAHs (between 40 and 80% of total concentrations) compared with those measured for the most-hydrophobic PAHs (<5% of total concentrations). When we focused on PAHs bound to PM from tunnel-wash waters, first-order desorption rates for PAHs with log K_(ow) > 5.5 were found in line with those commonly found for slowly or very slowly desorbing sediment-associated contaminants. PAHs with log K_(ow) < 5.5 were found at higher desorbing rates. The addition of detergents did not influence the extractability of lighter PAHs but increased desorption rates for the heavier PAHs, potentially contributing to increases in the toxicity of tunnel-wash waters when surfactants are used. The implications of total and accessible PAH concentrations measured in our urban PM samples are discussed in a context of management of PAH and PM emission to the surrounding aquatic environment. Although we only fully assessed PAHs in this work, further study should consider other contaminants such as OPAHs, which were also detected in all PM samples.
机译:城市环境中的融雪,地表径流或雨水释放会导致大量颗粒物结合的多环芳烃(PAH)排放到水生环境中。最近,人们已经发现诸如道路隧道冲洗之类的更具体的活动会增加地表水的污染物负荷。但是,对可能最终释放到城市地表水中的城市颗粒物(PM)中PAH可及性的了解有限。在本研究中,我们评估了与从不同城市来源收集的七个不同的(悬浮的)颗粒物样本相关的多环芳烃的可及性。以硅橡胶(SR)为萃取相的基于实验室的无限水槽萃取对大多数PM样品显示出类似的PAH可达性模式。与疏水性最强的PAHs(小于总浓度的5%)相比,疏水性较弱的PAHs(占总浓度的40%至80%)观察到的可及分数要高得多。当我们关注隧道冲洗水中与PM结合的PAH时,发现log K_(ow)> 5.5的PAH的一级解吸速率与通常缓慢或非常缓慢地解吸与沉积物相关的污染物的速率一致。 log K_(ow)<5.5的多环芳烃的解吸速率较高。添加洗涤剂不会影响较轻PAH的萃取能力,但会增加较重PAH的解吸速率,这可能会导致使用表面活性剂时增加隧道冲洗水的毒性。在管理城市环境中PAH和PM排放的背景下,讨论了在我们的城市PM样品中测得的总PAH浓度和可及的PAH浓度的含义。尽管我们在这项工作中仅对PAHs进行了全面评估,但进一步的研究应考虑其他污染物,例如OPAH,这些污染物也可在所有PM样品中检测到。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第15期|7964-7972|共9页
  • 作者单位

    Norwegian Institute for Water Research, Oslo Centre for Interdisciplinary Environmental and Social Research, Gaustadalleen 21, NO-0349 Oslo, Norway;

    Environmental and Molecular Toxicology Department, Oregon State University, ALS 1007, 2750 SW Campus Way, Corvallis, Oregon 97331, United States;

    Environmental Assessment Section, Norwegian Public Roads Administration, PO Box 8142 Dep, 0033 Oslo, Norway,Department of Environmental Sciences, Norwegian University of Life Sciences, PO Box 5003, N-1432 Aas, Norway;

    Norwegian Institute for Water Research, Oslo Centre for Interdisciplinary Environmental and Social Research, Gaustadalleen 21, NO-0349 Oslo, Norway;

    Norwegian Institute for Water Research, Oslo Centre for Interdisciplinary Environmental and Social Research, Gaustadalleen 21, NO-0349 Oslo, Norway;

    Environmental and Molecular Toxicology Department, Oregon State University, ALS 1007, 2750 SW Campus Way, Corvallis, Oregon 97331, United States;

    Norwegian Institute for Water Research, Oslo Centre for Interdisciplinary Environmental and Social Research, Gaustadalleen 21, NO-0349 Oslo, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:58:50

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