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半导体异质结光催化脱硫的最新进展和新见解:综述。

Recent progress and new insights on semiconductor heterojunctions powered photocatalytic desulphurization: A review.

机构信息

International Research Centre of Nanotechnology for Himalayan Sustainability (IRCNHS), Shoolini University, Solan, 173229, India.

International Research Centre of Nanotechnology for Himalayan Sustainability (IRCNHS), Shoolini University, Solan, 173229, India; Interdisciplinary and Innovate Research, Xi'an University of Architecture and Technology, Xi'an, 710055, PR China.

出版信息

Chemosphere. 2024 Sep;364:143237. doi: 10.1016/j.chemosphere.2024.143237. Epub 2024 Aug 31.

Abstract

Desulphurization of fossil fuels is a critical process in reducing the sulphur content from environment, which is a major contributor to atmospheric pollution. Traditional desulphurization techniques, while effective, often involve high energy consumption and the use of harsh chemicals. Recently, photocatalytic desulphurization has emerged as a promising, eco-friendly alternative, leveraging the potential of photocatalysts especially semiconductor heterojunctions to enhance photocatalytic efficiency. This review comprehensively discusses the significance and mechanism of photocatalytic desulphurization reactions, designing of various heterojunctions such as conventional, p-n, Z-scheme and S-scheme, their charge transfer mechanism and properties and their contribution to the photocatalytic desulphurization activity. Heterojunctions, formed by combining different semiconductor materials, facilitate efficient charge separation and broaden the light absorption range, thereby improving the photocatalytic performance under visible light. Furthermore, the recent advancements in the heterojunction systems in the field of photocatalytic desulphurization activity have been discussed in detail and summarized. The current limitations and challenges in this particular field are also explored. The paper concludes with an outlook on future research directions and the potential industrial applications of heterojunction-powered photocatalytic desulphurization, emphasizing its role in achieving cleaner energy production and environmental sustainability.

摘要

化石燃料脱硫是减少环境中硫含量的关键过程,硫是大气污染的主要贡献者。传统的脱硫技术虽然有效,但通常涉及高能耗和使用苛刻的化学物质。最近,光催化脱硫作为一种有前途的环保替代方法出现了,利用光催化剂特别是半导体异质结的潜力来提高光催化效率。本综述全面讨论了光催化脱硫反应的意义和机制、各种异质结的设计,如传统的 p-n、Z 型和 S 型,它们的电荷转移机制和性质,以及它们对光催化脱硫活性的贡献。异质结是通过结合不同的半导体材料形成的,有利于高效的电荷分离和拓宽光吸收范围,从而提高可见光下的光催化性能。此外,详细讨论并总结了光催化脱硫领域中异质结系统的最新进展。还探讨了该领域目前的局限性和挑战。本文最后展望了未来基于异质结的光催化脱硫的研究方向和潜在的工业应用,强调了它在实现更清洁的能源生产和环境可持续性方面的作用。

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