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NanoMembraneWater: development of innovative hybrid processes for contaminated water treatment using nanoporous membranes

机译:NanoMembraneWater:开发创新的混合工艺,使用纳米孔膜处理污水

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摘要

This study aims at the development of a hybrid process for the efficient treatment of water and potentially of wastewater, by the combination of ozonation and membrane filtration and the investigation of the complete ozone utilization by the employment of a novel ceramic membrane reactor concept. The advantages of the process are mainly referred to the achievement of a homogeneous (down to microscale) transfer and distribution of ozone ("bubbles aeration") within the main body of bulk water stream, which results in very efficient oxidation. Ceramic membranes were prepared initially, in order to investigate the single filtration of groundwater; tubular shaped nonsymmetric ceramic membranes were developed and their efficiency was examined for the removal of As-loaded water. Microporous γ-Al_2O_3-17Fe (molar ratio Al and Fe: 1:1) membrane was found to adsorb the pollutant As (V) ions up to 95%. The combined process of ozonation and membrane filtration was examined in a bench scale unit, where ozone was added through a ceramic diffuser at low flow rates, under continuous and intermittent modes. Simulated ground and surface water containing 25mgL~(-1) of kaolin and humic acid was fed to the reactor; it was found that the intermittent mode of ozone addition was beneficial over the continuous mode of operation, resulting in lower trans-membrane pressure values. However, the hybrid process of ozona-tion-membrane filtration resulted in a lower quality effluent with a higher Total Organic Carbon content, possibly due to the effect of ozone on organic substances: ozone resulted to the dissociation of large molecular weight compounds and the formation of smaller molecules that could easily pass through the membranes in the effluent. In addition, a new hybrid ozone-filtration unit has been constructed. In this unit, the water to be treated flows through the inner side of a tubular membrane while gaseous ozone stream flows along the outer. An appropriate pressure drop gradient causes ozone to flow towards the inner water stream through the nanopores of the ceramic membrane, causing oxidation (and decomposition) of the organic substances or complexes, which are present in the water stream. The retentate stream of the first step represents the influent to the second step where the removal of ions is achieved by ceramic membranes (ultrafiltration).
机译:这项研究旨在通过臭氧化和膜过滤相结合,开发一种可有效处理水和潜在废水的混合工艺,并通过采用新型陶瓷膜反应器概念来研究臭氧的完全利用。该方法的优点主要涉及在散装水流的主体内实现臭氧的均匀(至微尺度)转移和分布(“气泡曝气”),这导致非常有效的氧化。最初准备了陶瓷膜,以研究地下水的单次过滤。开发了管状非对称陶瓷膜,并研究了其去除含砷水的效率。发现微孔γ-Al_2O_3-17Fe(Al和Fe的摩尔比为1:1)膜可吸附高达95%的污染物As(V)离子。臭氧化和膜过滤的组合过程在台式装置中进行了检查,在该装置中,臭氧以连续和间歇模式通过低流速通过陶瓷扩散器添加。将含有25mgL〜(-1)的高岭土和腐殖酸的模拟地下水和地表水加入反应器;已经发现,臭氧的间歇添加方式优于连续操作方式,从而降低了跨膜压力值。然而,臭氧氧化膜过滤的混合过程导致出水质量降低,总有机碳含量更高,这可能是由于臭氧对有机物质的影响:臭氧导致大分子量化合物解离并形成较小的分子很容易穿过废水中的膜。此外,还建造了一个新的混合臭氧过滤装置。在该单元中,待处理的水流过管状膜的内侧,而气态臭氧流则沿着外侧流动。适当的压降梯度会导致臭氧通过陶瓷膜的纳米孔流向内部水流,从而导致水流中存在的有机物质或复合物氧化(和分解)。第一步的截留物流代表第二步的进水,在第二步中通过陶瓷膜(超滤)实现离子的去除。

著录项

  • 来源
    《Desalination and water treatment》 |2013年第27期|4938-4946|共9页
  • 作者单位

    Chemical Process and Energy Resources Institute, Center for Research and Technology, Hellas, GR-57001 Thessaloniki, Greece;

    Chemistry Department, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece;

    Chemical Process and Energy Resources Institute, Center for Research and Technology, Hellas, GR-57001 Thessaloniki, Greece;

    Department of Food Technology, Alexander Technological Education Institute of Thessaloniki, GR-57400 Thessaloniki, Greece;

    Chemical Process and Energy Resources Institute, Center for Research and Technology, Hellas, GR-57001 Thessaloniki, Greece,Chemical Engineering Department, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece;

    Chemistry Department, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece;

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

    Ceramic membranes; Ozonation; Water treatment; Hybrid process;

    机译:陶瓷膜;臭氧化;水处理;混合过程;

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