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新型高效的 Ultra-thin g-CN/FeOCl 纳米复合材料作为光 Fenton 催化剂,用于可见光下污染物降解和抗菌作用。

New and highly efficient Ultra-thin g-CN/FeOCl nanocomposites as photo-Fenton catalysts for pollutants degradation and antibacterial effect under visible light.

机构信息

College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.

College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.

出版信息

Chemosphere. 2022 Mar;290:133324. doi: 10.1016/j.chemosphere.2021.133324. Epub 2021 Dec 15.

Abstract

The photo-Fenton reaction was widely used in the removal of pollutants in waste water, which makes it exhibit great potential in the field of environmental remediation. Hence, it is crucial to explore a new efficient and stable photo-Fenton catalyst driven by visible light. In this work, a simple two-step calcination method was used to synthesize sheet-like stacked Ultra-thin g-CN/FeOCl (CNF) materials. The morphology, composition, photo-Fenton performance, and antibacterial properties were systematically analyzed. Research results exhibited that the synthesized CNF catalysts showed enhanced visible light absorption capacity and excellent photo-Fenton performance. Compared with FeOCl alone, CNF displayed stronger degradation ability for rhodamine B (RhB) and could achieve 97% degradation within 9 min, which was about 10 times that of pure FeOCl. At the same time, the composite catalysts exhibited excellent antibacterial effects under photo-Fenton conditions. The antibacterial rate of CNF composite catalyst under photo-Fenton conditions can reach almost 99%, which was 3 times that of photocatalysis alone and 2 times that of Fenton alone. The heterojunction formed between Ultra-thin g-CN and FeOCl promoted the separation of e and h. Simultaneously, the presence of e promoted the cycle of Fe and Fe in FeOCl, thereby promoting the generation of hydroxyl radicals (OH) from HO and improving the photo-Fenton activity to achieve the effect of degrading pollutants and antibacterial. The photo-Fenton catalysis and degradation mechanism were analyzed in detail. This work provided a theoretical basis for the application of CNF material in the removal of wastewater.

摘要

光芬顿反应广泛应用于废水中污染物的去除,这使其在环境修复领域表现出巨大的潜力。因此,探索一种新的高效、稳定的可见光驱动的光芬顿催化剂至关重要。在这项工作中,采用简单的两步煅烧法合成了片状堆叠的超薄 g-CN/FeOCl(CNF)材料。系统分析了其形态、组成、光芬顿性能和抗菌性能。研究结果表明,合成的 CNF 催化剂表现出增强的可见光吸收能力和优异的光芬顿性能。与单独的 FeOCl 相比,CNF 对罗丹明 B(RhB)表现出更强的降解能力,在 9 分钟内可达到 97%的降解率,约为纯 FeOCl 的 10 倍。同时,复合催化剂在光芬顿条件下表现出优异的抗菌效果。光芬顿条件下 CNF 复合催化剂的抗菌率可达近 99%,是单独光催化的 3 倍,单独芬顿的 2 倍。超薄 g-CN 与 FeOCl 之间形成的异质结促进了 e 和 h 的分离。同时,e 的存在促进了 FeOCl 中 Fe 和 Fe 的循环,从而促进了 HO 产生羟基自由基(OH),提高了光芬顿活性,实现了降解污染物和抗菌的效果。详细分析了光芬顿催化和降解机制。这项工作为 CNF 材料在废水处理中的应用提供了理论依据。

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