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基于 Z 型异质结构 Zr-MOFs/rGO/AgPO 光催化剂的有氧和厌氧适用光催化光纤表面负载对膜生物污染的新型控制策略。

Novel Control Strategy for Membrane Biofouling by Surface Loading of Aerobically and Anaerobically Applicable Photocatalytic Optical Fibers Based on a Z-Scheme Heterostructure Zr-MOFs/rGO/AgPO Photocatalyst.

机构信息

State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Siping Road, Shanghai 200092, P. R. China.

Shanghai Institute of Pollution Control and Ecological Security, Siping Road, Shanghai 200092, P. R. China.

出版信息

Environ Sci Technol. 2022 May 17;56(10):6608-6620. doi: 10.1021/acs.est.1c08031. Epub 2022 Apr 27.

Abstract

The high replacement cost of modified membranes in antibiofouling application is inevitable. Here, surface-loaded photocatalytic optical fibers (POFs) were developed as antibiofouling strategies to replace membrane modification. To prepare aerobically and anaerobically applicable POFs, novel visible light-driven zirconium-based metal-organic framework/reduced graphene oxide/AgPO (Zr-MOFs/rGO/AgPO) Z-scheme heterojunctions were constructed and coated on optical fibers. After loading the POFs on the membrane surface, the antibiofouling capability of the POFs was demonstrated during membrane filtration of bacteria and foulants under visible light irradiation. The disinfection efficiencies of the POFs against and reached 95.7 and 92.4%, respectively, by aerobic treatment and 90.3 and 85.5%, respectively, by anaerobic treatment. For the inactivated bacteria, cell membrane and membrane-associated functions were destroyed, accompanied by antioxidant enzyme decomposition, loss of cell respiration and adenosine triphosphate (ATP) synthesis capacity, and leakage and oxidation of protein, lipid, potassium, DNA, and RNA. During membrane filtration of model foulants and membrane bioreactor sludge, the POFs significantly alleviated the membrane flux decline by foulant disintegration. By qualitative and quantitative detection and quenching tests of reactive species, aerobically generated O and OH and anaerobically generated OH from POFs played dominant roles in the antibiofouling process. This work provides unique insights into membrane fouling control based on environmentally friendly and efficient photocatalytic technology.

摘要

在抗生物污染应用中,改性膜的高替换成本是不可避免的。在这里,负载表面的光催化光纤(POF)被开发为抗生物污染策略来替代膜改性。为了制备好氧和厌氧适用的 POF,构建了新型可见光驱动的锆基金属有机骨架/还原氧化石墨烯/AgPO(Zr-MOFs/rGO/AgPO)Z 型异质结,并将其涂覆在光纤上。将 POF 加载到膜表面后,在可见光照射下进行膜过滤细菌和污染物时,证明了 POF 的抗生物污染能力。通过好氧处理,POF 对 和 的消毒效率分别达到 95.7%和 92.4%,通过厌氧处理,分别达到 90.3%和 85.5%。对于失活的细菌,细胞膜和膜相关功能被破坏,同时伴随着抗氧化酶分解、细胞呼吸和三磷酸腺苷(ATP)合成能力丧失以及蛋白质、脂质、钾、DNA 和 RNA 的泄漏和氧化。在模型污染物和膜生物反应器污泥的膜过滤过程中,POF 通过污染物分解显著减轻了膜通量的下降。通过活性物质的定性和定量检测和猝灭试验,POF 好氧生成的 O 和 OH 和厌氧生成的 OH 在抗生物污染过程中起主导作用。这项工作为基于环保和高效光催化技术的膜污染控制提供了独特的见解。

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