Department of Chemistry, National Institute of Technology Silchar, 788010, Assam, India.
Department of Chemistry, National Institute of Technology Silchar, 788010, Assam, India.
Environ Res. 2023 Nov 1;236(Pt 1):116702. doi: 10.1016/j.envres.2023.116702. Epub 2023 Jul 23.
Environmental pollution and energy crisis have recently become one of the major global concerns. Insincere discharge of massive amount of organic and inorganic wastes into the aqueous bodies causes serious impact on our environment. However, these organic substances are significant sources of carbon and energy that could be sustainably utilized rather than being discarded. Photocatalytic fuel cell (PFC) is a smart and novel energy conversion device that has the ability to achieve dual benefits: degrading the organic contaminants and simultaneously generating electricity, thereby helping in environmental remediation. This article presents a detailed study of the recent advancements in the development of PFC systems and focuses on the fundamental working principles of PFCs. The degradation of various common organic and inorganic contaminants including dyes and antibiotics with simultaneous power generation and hydrogen evolution has been outlined. The impact of various operational factors on the PFC activity has also been briefly discussed. Moreover, it provides an overview of the design guidelines of the different PFC systems that has been developed recently. It also includes a mention of the materials employed for the construction of the photo electrodes and highlights the major limitations and relevant research scopes that are anticipated to be of interest in the days to come. The review is intended to serve as a handy resource for researchers and budding scientists opting to work in this area of PFC devices.
环境污染和能源危机最近已成为全球主要关注点之一。大量有机和无机废物不诚实地排放到水体中,对我们的环境造成了严重影响。然而,这些有机物质是碳和能源的重要来源,可以可持续利用,而不是被丢弃。光催化燃料电池(PFC)是一种智能且新颖的能量转换设备,具有同时实现双重效益的能力:降解有机污染物并同时发电,从而有助于环境修复。本文详细研究了 PFC 系统的最新发展,并重点介绍了 PFC 的基本工作原理。概述了同时发电和析氢时各种常见有机和无机污染物(包括染料和抗生素)的降解情况。还简要讨论了各种操作因素对 PFC 活性的影响。此外,它还概述了最近开发的不同 PFC 系统的设计指南。它还提到了用于构建光电的材料,并强调了在未来几天预计会引起关注的主要限制和相关研究范围。该综述旨在为选择在 PFC 器件领域工作的研究人员和崭露头角的科学家提供有用的资源。