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Wastewater recycling in Antarctica: Performance assessment of an advanced water treatment plant in removing trace organic chemicals

机译:南极洲的废水循环利用:先进水处理厂去除痕量有机化学物质的性能评估

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摘要

The Australian Antarctic Division (AAD) operates Australia's Davis Station in the Antarctic. In 2005, Davis Station's wastewater treatment plant failed and since then untreated, macerated effluent has been discharged to the ocean. The objectives of this study were to determine whether an advanced water treatment plant (AWTP) commissioned by the AAD and featuring a multi-barrier process involving ozonation, ceramic microfiltration, biologically activated carbon filtration, reverse osmosis, ultraviolet disinfection and chlorination was capable of producing potable water and a non-toxic brine concentrate that can be discharged with minimal environmental impact. The AWTP was tested using water from a municipal wastewater treatment plant in Tasmania, Australia. We used spot water and passive sampling combined with two multi-residue chromatographic-mass spectrometric methods and a range of recombinant receptor-reporter gene bioassays to screen trace organic chemicals (TrOCs), toxicity and receptor activity in the Feed water, in the environmental discharge (reject water), and product water from the AWTP for six months during 2014–15, and then again for three months in 2016. Across the two surveys we unambiguously detected 109 different TrOCs in the feed water, 39 chemicals in the reject water, and 34 chemicals in the product water. Sample toxicity and receptor activity in the feed water samples was almost totally removed in both testing periods, confirming that the vast majority of the receptor active TrOCs were removed by the treatment process. All the NDMA entering the AWTP in the feed and/or produced in the plant (typically < 50 ng/L), was retained into the reject water with no NDMA observed in the product water. In conclusion, the AWTP was working to design, and releases of TrOCs at the concentrations observed in this study would be unlikely cause adverse effects on populations of aquatic organisms in the receiving environment or users of the potable product water.
机译:澳大利亚南极分部(AAD)在南极运营澳大利亚的戴维斯站。 2005年,戴维斯站的废水处理厂发生故障,此后未经处理的浸软污水被排入海洋。这项研究的目的是确定由AAD委托并具有包括臭氧化,陶瓷微滤,生物活性炭过滤,反渗透,紫外线消毒和氯化的多道工序的先进水处理厂(AWTP)是否能够生产饮用水和无毒盐水浓缩物,可在对环境造成最小影响的情况下排放。使用澳大利亚塔斯马尼亚州市政污水处理厂的水对AWTP进行了测试。我们使用现场水和被动采样结合两种多残留色谱-质谱法和一系列重组受体-报告基因生物测定法来筛选环境排放中进水中的痕量有机化学物质(TrOCs),毒性和受体活性(拒绝水)和AWTP中的产品水在2014-15年度期间为六个月,然后在2016年为三个月。在两次调查中,我们明确地检测到了进水中的109种不同的TrOC,废水中的39种化学物质,产品水中的34种化学物质。在两个测试阶段中,进水样品中的样品毒性和受体活性几乎被完全去除,这证实了处理过程中去除了绝大多数受体活性TrOC。进料中和/或在工厂中生产的AWTP中的所有NDMA(通常≤50ng/ L)均被保留在废水中,而在产物水中未观察到NDMA。总之,AWTP正在设计中,以本研究中观察到的浓度释放的TrOCs不太可能对接收环境或饮用水使用者的水生生物种群造成不利影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第15期|122-129|共8页
  • 作者单位

    Centre for Aquatic Pollution Identification and Management (CAPIM), School of Chemistry, The University of Melbourne;

    Faculty of Environmental Engineering, The University of Kitakyushu;

    Center for Environmental Risk Research, National Institute for Environmental Studies;

    Center for Environmental Risk Research, National Institute for Environmental Studies;

    Institute for Sustainability and Innovation, Victoria University;

    Particulate Fluids Processing Centre, Department of Chemical Engineering, The University of Melbourne;

    Institute for Sustainability and Innovation, Victoria University;

    Particulate Fluids Processing Centre, Department of Chemical Engineering, The University of Melbourne;

    Centre for Environmental Sustainability and Remediation (EnSuRe), School of Science, RMIT University;

  • 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

    GC-MS-AIQS screening; Recombinant receptor-reporter gene bioassay; Chemcatcher passive sampler; Direct potable reuse; Antarctica; Water quality;

    机译:GC-MS-AIQS筛选;重组受体-报告基因生物测定;Chemcatcher被动采样器;可直接饮用的重复使用;南极洲;水质;

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