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首页> 外文期刊>Journal of water supply >Comparison of optional process configurations and operating conditions for ceramic membrane MF coupled with coagulation/flocculation pre-treatment for the removal of NOM in drinking water production
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Comparison of optional process configurations and operating conditions for ceramic membrane MF coupled with coagulation/flocculation pre-treatment for the removal of NOM in drinking water production

机译:陶瓷膜MF的可选工艺配置和操作条件与凝结/絮凝预处理相结合以去除饮用水中NOM的比较

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摘要

The increase of Natural Organic Matter (NOM) in natural water sources, partly caused by progressing climate change issues, is a growing concern for drinking water production. In recent years, membrane technology like Reverse Osmosis (RO) or Nanofiltration (NF) has been successfully applied as a robust solution for NOM removal to produce potable water. However, coagulation/flocculation pre-treatment, combined with Microfiltration (MF) ceramic membrane filtration is nowadays seen as an alternative, less-energy-consuming membrane process for NOM removal. In this study different coagulants have been used under varying coagulation/flocculation conditions to investigate the respective impact on membrane filtration performance. Three alternative coagulation/flocculation configurations were compared. It is shown that NOM was efficiently removed independently on the chosen configuration or coagulant type. Similar and low membrane fouling rates were observed for all tests. Residual metal concentration was found to be the limiting permeate quality parameter, which limits the options of operating conditions. Furthermore, the compact inline pipe flocculator configuration has the potential of designing more compact full-scale units, using less space compared to conventional sand filtration units or even membrane filtration plants using classical tank coagulation/flocculation configurations.
机译:天然水源中天然有机物(NOM)的增加部分是由不断发展的气候变化问题引起的,这对饮用水生产越来越引起关注。近年来,诸如反渗透(RO)或纳滤(NF)之类的膜技术已成功地用作去除NOM产生饮用水的可靠解决方案。但是,如今,凝结/絮凝预处理与微滤(MF)陶瓷膜过滤相结合已被视为一种替代的,能耗更低的膜去除NOM的方法。在这项研究中,在不同的混凝/絮凝条件下使用了不同的混凝剂,以研究其对膜过滤性能的影响。比较了三种替代的凝结/絮凝配置。结果表明,NOM可以独立于所选配置或凝结剂类型而有效去除。在所有测试中均观察到相似且低的膜污染率。发现残留金属浓度是限制渗透物质量的参数,这限制了操作条件的选择。此外,与传统的砂滤装置或什至使用经典罐式混凝/絮凝装置的膜过滤装置相比,紧凑的在线管式絮凝器构造具有设计更紧凑的全尺寸装置的潜力,并且使用的空间更少。

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