微型反应器
光催化
纳米技术
材料科学
微流控
太阳能
工艺工程
光催化分解水
环境科学
化学
分解水
工程类
催化作用
生物化学
电气工程
作者
Lei Wang,Ziyu Huang,Xiaohui Yang,Lukas Rogée,Xiaowen Huang,Xuming Zhang,Shu Ping Lau
出处
期刊:Reviews in Chemical Engineering
[De Gruyter]
日期:2022-05-18
卷期号:39 (5): 765-782
被引量:6
标识
DOI:10.1515/revce-2021-0068
摘要
Abstract Four interrelated issues have been arising with the development of modern industry, namely environmental pollution, the energy crisis, the greenhouse effect and the global food crisis. Photocatalysis is one of the most promising methods to solve them in the future. To promote high photocatalytic reaction efficiency and utilize solar energy to its fullest, a well-designed photoreactor is vital. Photocatalytic optofluidic microreactors, a promising technology that brings the merits of microfluidics to photocatalysis, offer the advantages of a large surface-to-volume ratio, a short molecular diffusion length and high reaction efficiency, providing a potential method for mitigating the aforementioned crises in the future. Although various photocatalytic optofluidic microreactors have been reported, a comprehensive review of microreactors applied to these four fields is still lacking. In this paper, we review the typical design and development of photocatalytic microreactors in the fields of water purification, water splitting, CO 2 fixation and coenzyme regeneration in the past few years. As the most promising tool for solar energy utilization, we believe that the increasing innovation of photocatalytic optofluidic microreactors will drive rapid development of related fields in the future.
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