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Chemical monitoring strategy for the assessment of advanced water treatment plant performance

机译:用于评估高级水处理厂性能的化学监测策略

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摘要

A pilot-scale plant was employed to validate the performance of a proposed full-scale advanced water treatment plant (AWTP) in Sydney, Australia. The primary aim of this study was to develop a chemical monitoring program that can demonstrate proper plant operation resulting in the removal of priority chemical constituents in the product water. The feed water quality to the pilot plant was tertiary-treated effluent from a wastewater treatment plant. The unit processes of the AWTP were comprised of an integrated membrane system (ultrafiltration, reverse osmosis) followed by final chlorination generating a water quality that does not present a source of human or environmental health concern. The chemical monitoring program was undertaken over 6 weeks during pilot plant operation and involved the quantitative analysis of Pharmaceuticals and personal care products, steroidal hormones, industrial chemicals, pesticides, N-nitrosamines and halomethanes. The first phase consisted of baseline monitoring of target compounds to quantify influent concentrations in feed waters to the plant. This was followed by a period of validation monitoring utilising indicator chemicals and surrogate measures suitable to assess proper process performance at various stages of the AWTP. This effort was supported by challenge testing experiments to further validate removal of a series of indicator chemicals by reverse osmosis. This pilot-scale study demonstrated a simplified analytical approach that can be employed to assure proper operation of advanced water treatment processes and the absence of trace organic chemicals.
机译:一家中型工厂被用来验证拟议中的澳大利亚悉尼全规模高级水处理厂(AWTP)的性能。这项研究的主要目的是开发一种化学监测程序,该程序可以证明工厂的正常运行,从而去除了产品水中的优先化学成分。中试厂的进水水质是废水处理厂的三级处理废水。 AWTP的单元过程由集成膜系统(超滤,反渗透)组成,然后进行最终的氯化,产生的水质不会引起人类或环境健康的关注。该化学监测计划在试点工厂运行期间进行了6周,涉及对药品和个人护理产品,甾体激素,工业化学品,农药,N-亚硝胺和卤代甲烷的定量分析。第一阶段包括对目标化合物进行基线监测,以量化工厂给水中的进水浓度。随后是使用指示剂化学品和替代措施的一段时间的验证监控,这些评估措施适合于评估AWTP各个阶段的适当过程性能。这项挑战得到了挑战测试实验的支持,以进一步验证通过反渗透去除一系列指示剂的方法。这项中试规模的研究表明,可以采用简化的分析方法来确保先进的水处理工艺的正常运行,并且不存在痕量有机化学物质。

著录项

  • 来源
    《Water supply》 |2010年第6期|p.961-968|共8页
  • 作者单位

    Unsw water Research Centre,University of New South Wales,NSW, 2052,Australia,Advanced water Technology Center (AQWATEC), Environmental Science and Engineering, Colorado School of Mines, Golden,CO 80401-1887,USA;

    Unsw water Research Centre,University of New South Wales,NSW, 2052,Australia;

    Unsw water Research Centre,University of New South Wales,NSW, 2052,Australia;

    Science and Technology, Sydney Water Corporation,1 Smith Street,Parramatta, NSW, 2000,Australia;

    Unsw water Research Centre,University of New South Wales,NSW, 2052,Australia;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    advanced water treatment plant; chemical monitoring strategy; reverse osmosis; trace chemical contaminants;

    机译:先进的水处理厂;化学监测策略;反渗透;微量化学污染物;

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