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Tracking effluent discharges in undisturbed stony soil and alluvial gravel aquifer using synthetic DNA tracers

机译:使用合成DNA示踪剂跟踪未受干扰的石质土壤和冲积砾石含水层中的废水排放

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摘要

With the intensification of human activities, fresh water resources are increasingly being exposed to contamination from effluent disposal to land. Thus, there is a greater need to identify the sources and pathways of water contamination to enable the development of better mitigation strategies. To track discharges of domestic effluent into soil and groundwater, 10 synthetic double-stranded DNA (dsDNA)~3 tracers were developed in this study. Laboratory column experiment and field groundwater and soil lysimeter studies were carried out spiking DNA with oxidation-pond domestic effluent. The selected DNA tracers were compared with a non-reactive bromide (Br) tracer with respect to their relative mass recoveries, speeds of travel and dispersions using the method of temporal moments. In intact stony soil and gravel aquifer media, the dsDNA tracers typically showed earlier breakthrough and less dispersion than the Br tracer, and underwent mass reduction. This suggests that the dsDNA tracers were predominantly transported through the network of larger pores or preferential flow paths. Effluent tracking experiments in soil and groundwater demonstrated that the dsDNA tracers were readily detect-able in effluent-contaminated soil and groundwater using quantitative polymerase chain reaction. DNA tracer spiked in the effluent at quantities of 36 µg was detected in groundwater 37 m down-gradient at a concentration 3-orders of magnitude above the detertion limit It is anticipated it could be detected at far greater distances. Our findings suggest that synthetic dsDNA tracers are promising for tracking effluent discharges in soils and groundwater but further studies are needed to investigate DNA-effluent interaction and the impact of subsurface environmental conditions on DNA attenuation. With further validation, synthetic dsDNA tracers, especially when multiple DNA tracers are used concurrently, can be an effective new tool to track effluent discharge in soils and groundwater, providing spatial estimation on the presence or absence of contamination sources and pathways.
机译:随着人类活动的加剧,淡水越来越多地受到污水排放到土地的污染。因此,更需要确定水污染的来源和途径,以制定更好的缓解策略。为了追踪生活污水向土壤和地下水中的排放,本研究开发了10种合成双链DNA(dsDNA)〜3示踪剂。进行了实验室色谱柱实验以及田间地下水和土壤溶渗仪的研究,并用氧化池塘的生活污水加标了DNA。使用瞬时矩方法,将所选的DNA示踪剂与非反应性溴化物(Br)示踪剂的相对质量回收率,行进速度和分散度进行了比较。在完整的石质土壤和砾石含水层介质中,dsDNA示踪剂通常显示出比Br示踪剂更早的渗透和更小的分散性,并且进行了质量降低。这表明dsDNA示踪剂主要通过较大的孔或优先流动路径的网络运输。在土壤和地下水中进行的废水跟踪实验表明,使用定量聚合酶链反应,在污染了土壤和地下水中的dsDNA示踪剂很容易检测到。在向下倾斜37 m的地下水中检测到掺入了36 µg废水的DNA示踪剂,其浓度比检测极限高3个数量级。预计可以在更远的距离检测到。我们的发现表明,合成的dsDNA示踪剂有望用于跟踪土壤和地下水中的废水排放,但是还需要进一步的研究来研究DNA与废水的相互作用以及地下环境条件对DNA衰减的影响。经过进一步验证,合成dsDNA示踪剂(尤其是同时使用多个DNA示踪剂时)可以成为跟踪土壤和地下水中废水排放的有效新工具,从而提供有关污染源和污染路径存在与否的空间估计。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|144-152|共9页
  • 作者单位

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand ,School of Biological Sciences, University of Canterbury, Private Bag 4800, Christchurch 8140, New Zealand;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand;

    School of Biological Sciences, University of Canterbury, Private Bag 4800, Christchurch 8140, New Zealand;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand ,Aix-Marseille University, 3 place Viaor Hugo, 13331 Marseille Cedex 03, France;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand;

    Institute of Environmental Science & Research Ltd (ESR), PO Box 29181, Christchurch 8540, New Zealand;

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

    DNA tracer; Water contamination; Effluent discharge; Groundwater; Soil;

    机译:DNA示踪剂水污染;废水排放;地下水;泥;

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