Persulfate-based advanced oxidation processes: The new hope brought by nanocatalyst immobilization

Ruonan Guo , Beidou Xi , Changsheng Guo , Xiuwen Cheng , Ningqing Lv , Wen Liu , Alistair G.L. Borthwick , Jian Xu
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引用次数: 24

Abstract

Persulfate-based advanced oxidation processes (persulfate-AOPs) offer great promise for environmental remediation, with heterogeneous catalysts providing the backbone of many wastewater purification technologies. Unlike conventional nanocatalyst heterogeneous systems, the immobilized-catalyst system can bypass the separation problem to reduce scour and prevent aggregation by anchoring nanoparticles onto porous or large-particle carriers. This review presents the state-of-the-art of knowledge concerning immobilization methodologies and reactors, reaction mechanisms, and activation performance. Immobilization techniques onto supports are summarized and discussed, including membrane-based reaction systems (immersion mode, and filtration mode), electrocatalytic auxiliary systems, and alternative supports (metallic glasses, aerogels, hydrogels, and specific materials). Key scientific problems and important prospects for the further development of immobilized catalysts are outlined.

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过硫酸盐基高级氧化工艺:纳米催化剂固定化带来的新希望
基于过硫酸盐的高级氧化工艺(过硫酸盐AOPs)为环境修复提供了巨大的前景,多相催化剂为许多废水净化技术提供了支柱。与传统的纳米催化剂多相系统不同,固定化催化剂系统可以绕过分离问题,通过将纳米颗粒锚定在多孔或大颗粒载体上来减少冲刷并防止聚集。这篇综述介绍了有关固定化方法和反应器、反应机理和活化性能的最新知识。综述并讨论了载体固定化技术,包括基于膜的反应系统(浸渍模式和过滤模式)、电催化辅助系统和替代载体(金属玻璃、气凝胶、水凝胶和特定材料)。概述了固定化催化剂的关键科学问题和进一步发展的重要前景。
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