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State of the art and review on the treatment technologies of water reverse osmosis concentrates

机译:反渗透浓缩水的处理技术现状与研究进展

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摘要

The growing demand for fresh water is partially satisfied by desalination plants that increasingly use membrane technologies and among them reverse osmosis to produce purified water. Operating with water recoveries from 35% to 85% RO plants generate huge volumes of concentrates containing all the retained compounds that are commonly discharged to water bodies and constitute a potentially serious threat to marine ecosystems; therefore there is an urgent need for environmentally friendly management options of RO brines. This paper gives an overview on the potential treatments to overcome the environmental problems associated to the direct discharge of RO concentrates. The treatment options have been classified according to the source of RO concentrates and the maturity of the technologies. For the sake of clarity three different sources of RO concentrates are differentiated i) desalination plants, ii) tertiary processes in WWTP, and iii) mining industries. Starting with traditional treatments such as evaporation and crystallization other technologies that have emerged in last years to reduce the volume of the concentrate before disposal and with the objective of achieving zero liquid discharge and recovery of valuable compounds from these effluents are also reviewed. Most of these emerging technologies have been developed at laboratory or pilot plant scale (see Table 1). With regard to RO concentrates from WWTP, the manuscript addresses recent studies that are mainly focused on reducing the organic pollutant load through the application of innovative advanced oxidation technologies. Finally, works that report the treatment of RO concentrates from industrial sources are analyzed as well.
机译:海水淡化厂部分满足了对淡水不断增长的需求,这些海水淡化厂越来越多地使用膜技术,其中包括反渗透以生产纯净水。在水回收率从35%到85%的反渗透工厂中运行时,会产生大量的浓缩物,其中包含所有残留的化合物,这些化合物通常排放到水体中,并对海洋生态系统构成潜在的严重威胁;因此,迫切需要反渗透盐水的环保管理选择。本文概述了克服与RO精矿直接排放相关的环境问题的潜在处理方法。根据反渗透浓缩物的来源和技术的成熟度对处理方法进行了分类。为了清楚起见,区分了以下三种不同的反渗透精矿来源:i)海水淡化厂,ii)污水处理厂的三级工艺和iii)采矿业。从传统的处理方法(例如蒸发和结晶)开始,近年来也出现了其他技术以减少浓缩液在处置之前的体积,并且其目的是实现零液体排放并从这些废水中回收有价值的化合物。这些新兴技术大多数是在实验室或中试工厂规模开发的(请参见表1)。关于污水处理厂的反渗透浓缩物,该手稿涉及最近的研究,这些研究主要集中在通过应用创新的先进氧化技术降低有机污染物负荷上。最后,还对报告工业来源反渗透浓缩物的处理工作进行了分析。

著录项

  • 来源
    《Water Research》 |2012年第2期|p.267-283|共17页
  • 作者单位

    Dpto. lngenieria Quimica y QI. ETSIIyT, Universidad de Cantabria, Au. de los Castros s, 39005 Santander, Spain;

    Dpto. lngenieria Quimica y QI. ETSIIyT, Universidad de Cantabria, Au. de los Castros s, 39005 Santander, Spain;

    Dpto. lngenieria Quimica y QI. ETSIIyT, Universidad de Cantabria, Au. de los Castros s, 39005 Santander, Spain;

    Dpto. lngenieria Quimica y QI. ETSIIyT, Universidad de Cantabria, Au. de los Castros s, 39005 Santander, Spain;

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

    reverse osmosis concentrates; volume reduction; pollutant load reduction; salt recovery; nutrient recovery;

    机译:反渗透浓缩液;减少体积;减少污染物负荷;盐回收;营养回收;

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