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用于过硫酸盐活化以去除有机污染物的无金属石墨烯基催化膜:综述

Metal-free graphene-based catalytic membranes for persulfate activation toward organic pollutant removal: a review.

作者信息

Xia Xin, Luo Junpeng, Liu Dapeng, Liu Tingting, Wu Congyanghui, Qian Feiyue

机构信息

School of Environmental Science and Engineering, Suzhou University of Science and Technology, No. 99 Xuefu Road, Suzhou, 215009, People's Republic of China.

National and Local Joint Engineering Laboratory of Municipal Sewage Resource Utilization Technology, No. 99 Xuefu Road, Suzhou, 215009, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(50):75184-75202. doi: 10.1007/s11356-022-23063-z. Epub 2022 Sep 21.

Abstract

Owing to their ultrathin two-dimensional structure and efficient catalytic ability for persulfate activation, graphene-based nanocarbons exhibit considerable application potential in fabricating carbonaceous composite membranes for in situ catalytic oxidation to remove organic pollutants. This approach offers significant advantages over conventional batch systems. However, the relationships between the physicochemical properties of carbon mats and performance of graphene-based catalytic membranes in water purification remain ambiguous. Herein, we summarize the main mechanisms of in situ catalytic oxidation and the facile fabrication strategies of carbonaceous composite membranes. Different factors influencing the performance of graphene-based catalytic membranes are comprehensively discussed. The defective level, heteroatom doping, and stacking morphology of carbon mats and operational conditions during filtration play critical roles in the oxidative degradation of target pollutants. Long-term operation leads to the deterioration of catalytic activity and transmembrane pressure, especially in the complex water matrix. Finally, the present challenges and future perspectives are presented to improve the anti-fouling performance and catalytic stability of membranes and develop scalable fabrication methods to promote the engineering applications of in situ catalytic oxidation in real water purification.

摘要

由于其超薄的二维结构和对过硫酸盐活化的高效催化能力,基于石墨烯的纳米碳在制备用于原位催化氧化以去除有机污染物的碳质复合膜方面展现出可观的应用潜力。这种方法比传统的间歇式系统具有显著优势。然而,碳垫的物理化学性质与基于石墨烯的催化膜在水净化中的性能之间的关系仍不明确。在此,我们总结了原位催化氧化的主要机制以及碳质复合膜的简便制备策略。全面讨论了影响基于石墨烯的催化膜性能的不同因素。碳垫的缺陷水平、杂原子掺杂和堆积形态以及过滤过程中的操作条件在目标污染物的氧化降解中起着关键作用。长期运行会导致催化活性和跨膜压力的恶化,尤其是在复杂的水基质中。最后,提出了当前的挑战和未来的展望,以提高膜的抗污染性能和催化稳定性,并开发可扩展的制备方法,以促进原位催化氧化在实际水净化中的工程应用。

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