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Irrigated greywater in an urban sub-division as a potential source of metals to soil, groundwater and surface water

机译:城市分区中的灌溉灰水,可能是土壤,地下水和地表水中金属的潜在来源

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摘要

Increased water demands in dry countries such as Australia, have led to increased adoption of various water reuse practices. Irrigation of greywater (all water discharged from the bathrooms, laundry and kitchen apart from toilet waste) is seen as a potential means of easing water demands; however, there is limited knowledge of how greywater irrigation impacts terrestrial and aquatic environments. This study compared four greywater irrigated residential lots to adjacent non-irrigated lots that acted as controls. Accumulation and potential impacts of metals in soil, groundwater and surface water, as a result of greywater irrigation, were assessed by comparing measured concentrations to national and international guidelines. Greywater increased concentrations of some metals in irrigated soil and resulted in As, B, Cr and Cu exceeding guidelines after only four years of irrigation. Movement of metals from the irrigation areas resulted in metal concentrations in groundwater (Al, As, Cr, Cu, Fe, Mn, Ni and Zn) and surface water (Cu, Fe and Zn) exceeding environmental quality guidelines again within four years. These results are unlikely to be universally applicable but indicate the need to consider metals in greywater in order to minimize potential adverse environmental effects from greywater irrigation.
机译:干旱国家(如澳大利亚)对水的需求增加,导致人们越来越多地采用各种水回用方法。灌溉灰水(浴室,洗衣房和厨房排出的所有水,除厕所废物外)被认为是缓解用水需求的一种潜在手段;但是,关于灰水灌溉如何影响陆地和水生环境的知识很少。这项研究将四个灰水灌溉居民区与作为对照的相邻非灌溉土地进行了比较。通过将测得的浓度与国家和国际准则进行比较,评估了灰水灌溉对土壤,地下水和地表水中金属的累积和潜在影响。灌溉仅四年后,灰水增加了灌溉土壤中某些金属的浓度,并导致砷,硼,铬和铜超标。金属从灌溉区域的迁移导致地下水(Al,As,Cr,Cu,Fe,Mn,Ni和Zn)和地表水(Cu,Fe和Zn)中的金属浓度在四年内再次超过了环境质量指标。这些结果不可能普遍适用,但表明需要考虑灰水中的金属,以最大程度地减少灰水灌溉对环境的潜在不利影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第3期|806-817|共12页
  • 作者单位

    Water Quality and Investigations. Environmental Monitoring and Assessment Sciences, Science Division, The State of Queensland, Department of Science, Information Technology and Innovation, Dutton Park, Queensland, Australia,School of Physical and Chemical Sciences, Queensland University of Technology, Brisbane, Queensland, Australia,Australian Rivers Institute, Griffith University, Nathan. Queensland, Australia;

    Water Quality and Investigations. Environmental Monitoring and Assessment Sciences, Science Division, The State of Queensland, Department of Science, Information Technology and Innovation, Dutton Park, Queensland, Australia,National Research Centre for Environmental Toxicology, University of Queensland, Robertson, Queensland, Australia,Australian Rivers Institute, Griffith University, Nathan. Queensland, Australia,Centre for Agroecology, Water and Resilience, University, Coventry, United Kingdom;

    School of Physical and Chemical Sciences, Queensland University of Technology, Brisbane, Queensland, Australia;

    Water Quality and Investigations. Environmental Monitoring and Assessment Sciences, Science Division, The State of Queensland, Department of Science, Information Technology and Innovation, Dutton Park, Queensland, Australia,Australian Rivers Institute, Griffith University, Nathan. Queensland, Australia;

    School of Physical and Chemical Sciences, Queensland University of Technology, Brisbane, Queensland, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Greywater; Groundwater; Irrigation; Metals; Soil; Water reuse;

    机译:灰水;地下水;灌溉;金属;泥;中水回用;

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