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An Electrocatalytic Membrane Reactor with Self-Cleaning Function for Industrial Wastewater Treatment

机译:具有自清洁功能的电催化膜反应器用于工业废水处理

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Industrial wastewater has become a global issue due to its high concentration of pollutants, especially refractory organic compounds. Membrane technology has attracted considerable attention in industrial wastewater purification over the past decades owing to its high flexibility regarding water quality and low investment costs. However, inherent membrane fouling caused by concentration polarization and pore blocking leads to low plant reliability and limits wide industrial application in wastewater treatment. Controlling and mitigating membrane fouling has become the most critical problem in the field of membrane technology for water and wastewater treatment. To tackle this challenging issue, many strategies have been implemented, such as pretreating feed water, development of antifouling membranes, new design of membrane modules, optimizing operating conditions, and integrating membrane processes with other techniques. Despite all the efforts, membrane fouling is still not completely solved. Apart from membrane technology, photocatalytic oxidation and electrocatalytic oxidation, with their low toxicity and high efficiency, have been considered competitive candidates for industrial wastewater treatment. However, low utilization of visible-light photons and difficult recycling of photocatalysts for photocatalytic oxidation, as well as the huge energy consumption for electrocatalytic oxidation, hinder their extensive application. Besides, their combination with membrane technology is still far from satisfactory for water treatment.
机译:由于工业废水的污染物浓度高,尤其是难处理的有机化合物,因此已成为全球性问题。膜技术由于其在水质方面的高度灵活性和较低的投资成本,在过去的几十年中已在工业废水净化中引起了广泛的关注。然而,由浓度极化和孔阻塞引起的固有的膜污染导致设备可靠性低,并且限制了废水处理中的广泛工业应用。在水和废水处理用膜技术领域,控制和减轻膜污染已成为最关键的问题。为了解决这个具有挑战性的问题,已经实施了许多策略,例如预处理给水,开发防污膜,膜组件的新设计,优化操作条件以及将膜工艺与其他技术集成。尽管付出了所有努力,但膜污染仍未完全解决。除膜技术外,光催化氧化和电催化氧化具有低毒性和高效率的优点,被认为是工业废水处理的竞争性候选产品。然而,可见光光子利用率低和用于光催化氧化的光催化剂难以回收以及用于电催化氧化的巨大能量消耗阻碍了它们的广泛应用。此外,它们与膜技术的结合对于水处理仍远未令人满意。

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