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The effectiveness of removal of nom from natural water using photocatalytic membrane reactors in PMR-UF and PMR-MF modes

机译:在PMR-UF和PMR-MF模式下使用光催化膜反应器从天然水中去除标称物的有效性

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摘要

Photocatalytic membrane reactors operated with the suspended photocatalyst are very useful devices and may be configured in different modes. The crucial technological aspect of such a reactor performance is an optimization of a membrane separation process, which determines both, effectiveness and economic of the water production process. In both investigated photoreactor's configurations the photo catalyst was used for many hours of the water purification and in any case it did not lose its properties. It was due to the continuous regeneration of the photocatalyst surface by means of photooxidation of the contaminants. However, insignificant losses of the photocatalyst were observed during PMR-MF process, in which recirculation of water with the catalyst, i.e. reactor-membrane-reactor, was made. The second applied configuration, i.e. PMR-UF, was more advantageous as no catalyst losses took place. Both types of applied membranes assured the complete separation of the photocatalyst from purified water, while OF membrane additionally acted as a water polishing device. (C) 2016 Elsevier B.V. All rights reserved.
机译:用悬浮的光催化剂操作的光催化膜反应器是非常有用的装置,并且可以以不同的模式配置。这种反应器性能的关键技术方面是膜分离工艺的优化,这决定了水生产工艺的有效性和经济性。在两种研究的光反应器配置中,光催化剂都用于水净化许多小时,并且在任何情况下都不会丧失其性能。这是由于通过污染物的光氧化使光催化剂表面连续再生。然而,在PMR-MF过程中观察到光催化剂的微不足道的损失,其中用催化剂即反应器-膜-反应器进行水的循环。第二种应用构型,即PMR-UF,由于没有发生催化剂损失而更为有利。两种类型的应用膜都可以确保光催化剂与纯净水完全分离,而OF膜还可以充当水抛光设备。 (C)2016 Elsevier B.V.保留所有权利。

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