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Production of drinking water using a multi-barrier approach integrating nanofiltration: A pilot scale study

机译:使用集成纳米过滤的多屏障方法生产饮用水:中试规模研究

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A multi-barrier system was studied for the production of drinking water with high chemical and microbiological quality. The integration of nanofiltration (NF) and ultraviolet (UV) photolysis was tested at pilot scale in a surface water treatment plant. The NF membranes tested, Desal DK and NF270, allow for the production of permeates with high quality standards, although the membrane with higher molecular weight cut-off (NF270) revealed to be the best option for surface water treatment due to its higher permeability. The NF270 membrane was also efficient to deliver high quality water, even under high pollutant concentrations, making possible to operate with water recovery rates as high as 98%. Extensive studies were performed in the water treatment plant where the proposed system was tested at three locations of the drinking water production line. Seeking to achieve the best compromise between high recovery rate, high retention of chemicals and microorganisms as well as preventing operational problems (flux decline and fouling), it was found that the integrated system should be placed after the conventional sand filtration, operating at a 91% recovery rate. Under the selected conditions - TMP of 8 bar and recovery rate of 91% - it is possible to operate at constant permeability without flux decline for a period of 15 days, after which a gentle CIP procedure is recommended. Membrane fouling was also investigated and the major foulant classes identified were proteins, polysaccharides and humic acids. A cleaning protocol was also tested and the impact of each cleaning step on the recovery of permeability evaluated.
机译:研究了一种多屏障系统,用于生产化学和微生物质量较高的饮用水。在地表水处理厂中试规模测试了纳滤(NF)和紫外线(UV)光解的集成。经过测试的NF膜Desal DK和NF270允许生产具有高质量标准的渗透液,尽管分子量截留值较高的膜(NF270)由于具有较高的渗透性而成为表面水处理的最佳选择。 NF270膜即使在高污染物浓度下也能高效输送高质量的水,从而能够以高达98%的水回收率运行。在水处理厂进行了广泛的研究,在拟议的系统中对饮用水生产线的三个位置进行了测试。为了在高回收率,化学品和微生物的高截留率之间寻求最佳平衡,并防止操作问题(流量下降和结垢),发现集成系统应在常规砂滤之后放置,操作温度为91 % 恢复率。在选定的条件下-TMP为8 bar,回收率为91%-可以在15天内保持恒定的渗透率且通量没有下降的情况下操作,此后建议进行柔和的CIP程序。还对膜污染进行了调查,发现的主要污垢类别为蛋白质,多糖和腐殖酸。还测试了清洁方案,并评估了每个清洁步骤对渗透率恢复的影响。

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