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Ultra-low pressure membrane-based bio-purification process for decentralized drinking water supply: Improved permeability and removal performance

机译:基于超低压膜的生物净化工艺,用于分散式饮用水的供应:改善的渗透性和去除性能

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Ultra-low pressure gravity-driven membrane (GDM) filtration has been proposed as a cost-efficiency alternative for the decentralized drinking water supply in terms of its simple operation and low energy consumptions, whereas its undesirable removals of dissolved organic compounds (DOC) and relatively low flux impede its widespread application. In order to improve its filtration performance, filter media (granular activated carbon (GAC), zeolite and bio-ceramsite) was directly coated on the membrane surface to engineer an integrated GDM system. The coating filter layer and bio-cake layer on the membrane surface could engineer a highly porous "multifunctional double layer" structure, which facilitated improvements of stabilized flux by 30%-120% relative to GDM control. Besides, coating filter media to GDM can efficiently combine the complementary performance between filter coat and GDM filtration, and thus the removals of CODMn were improved to 21%, 30% and 70% in bio-ceramsite, zeolite and GAC coated systems. Furthermore, the integrated GDM systems conferred much higher potentials in resisting the shock load of contaminants (e.g. organics, ammonia, iron and manganese) compared to GDM control. In addition, a low-aeration cleaning in presence of filter media scouring could efficiently improve the flux recovery from 35% to 50-94%, while the membrane integrity test indicated that such filter media scouring would not damage the membrane surface. Overall, these findings can hopefully spark improvements of both permeability and permeate quality in GDM filtration and bring relevant benefits to the applications of GDM technologies for decentralized drinking water supply. (C) 2018 Elsevier Ltd. All rights reserved.
机译:从操作简单和能耗低的角度考虑,超低压重力驱动膜(GDM)过滤已被提议作为分散式饮用水供应的一种经济高效的替代方法,但它不希望去除溶解的有机化合物(DOC)和相对较低的通量阻碍了其广泛应用。为了提高其过滤性能,将过滤介质(颗粒活性炭(GAC),沸石和生物陶粒)直接涂在膜表面上,以设计出一个集成的GDM系统。膜表面上的涂层过滤层和生物滤饼层可以设计出高度多孔的“多功能双层”结构,相对于GDM控制,该结构有助于将稳定通量提高30%-120%。此外,将过滤介质涂覆到GDM上可以有效地结合滤膜和GDM过滤之间的互补性能,因此在生物陶粒,沸石和GAC涂覆系统中,CODMn的去除率分别提高到21%,30%和70%。此外,与GDM控制相比,集成的GDM系统在抵抗污染物(例如有机物,氨,铁和锰)的冲击负荷方面具有更高的潜力。此外,在过滤介质冲刷的情况下进行低曝气清洁可以有效地将通量回收率从35%提高到50-94%,而膜完整性测试表明这种过滤介质冲刷不会损坏膜表面。总体而言,这些发现有望在GDM过滤中提高渗透率和渗透物质量,并为GDM技术在分散式饮用水供应中的应用带来相关利益。 (C)2018 Elsevier Ltd.保留所有权利。

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