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Assessing the Risk of Metals and Their Mixtures in the Antarctic Nearshore Marine Environment with Diffusive Gradients in Thin-Films

机译:在薄膜中具有扩散梯度的南极近岸海洋环境中评估金属及其混合物的风险

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摘要

Robust environmental assessments and contaminant monitoring in Antarctic near-shore marine environments need new techniques to overcome challenges presented by a highly dynamic environment. This study outlines an approach for contaminant monitoring and risk assessment in Antarctic marine conditions using diffusive gradients in thin-films (DGT) coupled to regionally specific ecotoxicology data and environmental quality standards. This is demonstrated in a field study where DGT samplers were deployed in the near-shore marine environment of East Antarctica around the operational Casey station and the abandoned Wilkes station to measure the time-averaged biologically available fraction of metal contaminants. The incorporation of DGT-Iabile concentrations to reference toxicity mixture models for three Antarctic organisms predicted low toxic effects (<5% effect to the growth or development of each organism). The comparison of metal concentrations to the Australian and New Zealand default water quality guideline values (WQGVs) showed no marine site exceeding the WQGVs for 95% species protection. However, all sites exceeded the 99% WQGVs due to copper concentrations that are likely of geogenic origin (i.e., not from anthropogenic sources). This study provides evidence supporting the use of the DGT technique to monitor contaminants and assess their environmental risk in the near-shore marine environment of Antarctica.
机译:在南极近岸海洋环境中进行可靠的环境评估和污染物监测需要采用新技术来克服高动态环境所带来的挑战。这项研究概述了一种使用薄膜扩散梯度(DGT)结合区域特定的生态毒理学数据和环境质量标准在南极海洋条件下进行污染物监测和风险评估的方法。这在一项现场研究中得到了证明,其中DGT采样器被部署在可运营的Casey站和废弃的Wilkes站附近的南极东部近海海洋环境中,以测量金属污染物的平均生物可利用时间。将DGT-Iabile浓度并入三种南极生物的参考毒性混合物模型中可预测出低毒作用(对每种生物的生长或发育影响小于5%)。金属浓度与澳大利亚和新西兰默认水质准则值(WQGV)的比较表明,没有超过95%物种保护的海洋场所超过WQGVs。但是,由于铜的浓度很可能是地质成因(即不是来自人为来源),所有地点都超过了99%的WQGV。这项研究提供了支持使用DGT技术监测污染物并评估其在南极近岸海洋环境中的环境风险的证据。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|306-315|共10页
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  • 作者单位

    Faculty of Science University of Technology Sydney Ultimo NSW 2007 Australia School of Chemistry University of Wollongong Wollongong NSW 2522 Australia CSIRO Land and Water Lucas Heights NSW 2234 Australia;

    Australian Antarctic Division Kingston Tasmania 7050 Australia;

    Faculty of Science University of Technology Sydney Ultimo NSW 2007 Australia CSIRO Land and Water Lucas Heights NSW 2234 Australia;

    CSIRO Land and Water Lucas Heights NSW 2234 Australia;

    Faculty of Science University of Technology Sydney Ultimo NSW 2007 Australia;

  • 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);
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  • 正文语种 eng
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