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Fouling and transport of organic matter in cellulose triacetate forwar-dosmosis membrane for wastewater reuse and seawater desalination

机译:纤维素中有机质的污垢和运输三乙酸前渗透膜进行废水再利用和海水海水淡化

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Forward osmosis (FO) can extract water from a solution with a low chemical potential (feed solution, FS) and transport it to a solution with a high chemical potential (draw solution, DS) through natural osmotic pressure. For wastewater reuse via FO, an identifying the foulants and understanding the fouling and transport mechanisms are important. An element-scale spiral-wound FO (SWFO) system and a laboratory-scale FO module tests were conducted with a cellulose triacetate-based FO membrane. Secondary wastewater effluent was used as the FS. To determine the main foulants in FO, the element-scale SWFO was operated at a wastewater plant for 36 d, and a detailed characterization of the foulants (particularly organic matters; OMs) and a membrane autopsy were conducted. The results were verified via a laboratory-scale demonstration. Hydrophilic and largemolecular-weight OMs was the main foulant. It was transported to the DS from the FS through the membrane. The water flux, reverse solute flux, and related parameters (type, concentration, and valence of the draw solute) affected the transport of OMs through the FO membrane. Therefore, further study is needed to develop strategies for reducing the transportation of OMs through the membrane in the wastewater reuse by selecting a suitable draw solute or properly arranging the elements.
机译:前渗透(Fo)可以通过具有低化学电位(进料溶液,FS)的溶液中提取水,并通过天然渗透压将其运送到具有高化学电位(绘制溶液DS)的溶液中。对于通过FO的废水再利用,犯规污垢和了解污垢和运输机制很重要。用基于纤维素的纤维素的FO膜进行元素鳞片卷绕Fo(SWFO)系统和实验室标度FO模块试验。二次废水流出物用作FS。为了确定FO中的主要污垢,在污水厂的情况下,在36d下操作元素标度SWFO,并进行了污垢(特别是有机物质; OMS)和膜尸检的详细表征。结果通过实验室规模示范验证。亲水性和大分子重量oms是主要污垢。它通过膜从FS运输到DS。水通量,逆转溶质通量和相关参数(绘制溶质的型,浓度和价)影响OMS通过FO膜的运输。因此,需要进一步研究来制定通过选择合适的抽水溶质或适当地布置元件来减少废水中通过膜通过膜来减少OMS的运输的策略。

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