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采用改性多层催化阳极光电催化处理具有新兴关注污染物的城市污水。

Photoelectrocatalytic treatment of municipal wastewater with emerging concern pollutants using modified multi-layer catalytic anode.

机构信息

Department of Chemical and Metallurgical Engineering, Aalto University, Espoo, 00076, Finland.

Department of Environmental Engineering, Seoul National University of Science and Technology, Seoul, 01811, South Korea.

出版信息

Chemosphere. 2023 Oct;339:139575. doi: 10.1016/j.chemosphere.2023.139575. Epub 2023 Jul 22.

Abstract

Municipal wastewater contains emergent chemical and biological pollutants that are resistant to conventional wastewater treatments. Therefore, the focus of the current study was to address the challenge of removing emergent chemical and biological pollutants present in municipal wastewater. To achieve this, a photo electro-catalytic (PEC) treatment approach was employed, focusing on the removal of both micro and biological pollutants that are of emergent concern, as well as the reduction of Chemical Oxidation Demand (COD) and Total Organic Carbon (TOC). The treatment involved the use of a modified multi-layer catalytic anode photo-electroactive anode as an effective anode for PEC treatment of municipal wastewater. In the continuous mode of operation, %COD removal was optimized for the treatment of municipal wastewater under Ultra-Violet C (UVc), 280 nm, and Visible (Vis) radiation, 400 nm. Therefore, a comparative study was performed to investigate the effect of Vis radiation on %COD removal, micropollutants removal, and disinfection of municipal wastewater. Micropollutants present in municipal wastewater were effectively oxidized/degraded with the highest reduction rate between 100% and 80% under the influence of UVc and Vis radiation respectively by the PEC treatment process. Disinfection of various microorganisms present in the wastewater with the effect of UVc and Vis assisted PEC treatment was also monitored. Overall, 75-80% of the disinfection of municipal wastewater was contributed by the modified multi-layer catalytic anode. The UVc in the PEC system, contributes approximately 20-25% to the overall disinfection of municipal wastewater.

摘要

城市污水中含有新兴的化学和生物污染物,这些污染物对传统的污水处理方法具有抗性。因此,当前研究的重点是解决去除城市废水中新兴的化学和生物污染物的问题。为了实现这一目标,采用了光电催化(PEC)处理方法,重点去除微污染物和生物污染物,这些污染物是当前关注的焦点,同时还降低了化学需氧量(COD)和总有机碳(TOC)。该处理方法涉及使用改良的多层催化阳极光电活性阳极作为有效的阳极,用于城市废水的 PEC 处理。在连续运行模式下,优化了紫外 C(UVc),280nm 和可见光(Vis)辐射,400nm 条件下城市废水的 COD 去除率。因此,进行了一项比较研究,以调查 Vis 辐射对 COD 去除率、微污染物去除率和城市废水消毒的影响。在 UVc 和 Vis 辐射的影响下,城市废水中的各种新兴污染物被有效地氧化/降解,最高还原率分别为 100%和 80%。通过 PEC 处理过程,还监测了各种微生物在废水消毒中的作用。总的来说,UVc 和 Vis 辅助 PEC 处理对城市废水的消毒效果约为 75-80%。PEC 系统中的 UVc 对城市废水的总消毒贡献约为 20-25%。

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