Huang Kong Ethan Dern, Lai Chin Wei, Juan Joon Ching, Pang Yean Ling, Khe Cheng Seong, Badruddin Irfan Anjum, Gapsari Femiana, Anam Khairul
Nanotechnology and Catalysis Research Centre (NANOCAT), University of Malaya, Kuala Lumpur 50603, Malaysia.
Department of Mechanical Engineering, Faculty of Engineering, Brawijaya University, MT Haryono 167, Malang 65145, Indonesia.
iScience. 2025 Apr 8;28(5):112368. doi: 10.1016/j.isci.2025.112368. eCollection 2025 May 16.
Water pollution from organic pollutants such as dyes and pharmaceuticals poses severe threats to ecosystems and human health, demanding effective remediation strategies. Conventional water treatment methods fall short in eliminating these contaminants, prompting interest in photocatalysis, which uses light energy to degrade pollutants into harmless substances such as carbon dioxide and water. This sustainable approach offers efficient pollutant removal with recyclable photocatalysts but faces challenges such as rapid charge recombination and limited electron-hole migration. Research aims to enhance photocatalytic efficiency under UV, visible, and solar light through metal doping and binary oxide systems, particularly titanium dioxide, which improves charge carrier migration and delays recombination. Coupling titanium dioxide with bio-derived carbon shows promise in enhancing electron-hole separation and visible light absorption. This review explores advances in photocatalyst synthesis, degradation mechanisms, adsorption reactions, and economic value of bioderived photocatalysts, emphasizing the potential of photocatalysis for efficient wastewater treatment.
来自染料和药物等有机污染物的水污染对生态系统和人类健康构成了严重威胁,因此需要有效的修复策略。传统的水处理方法在消除这些污染物方面存在不足,这引发了人们对光催化的兴趣,光催化利用光能将污染物降解为二氧化碳和水等无害物质。这种可持续的方法通过可回收的光催化剂实现了高效的污染物去除,但面临着诸如快速电荷复合和有限的电子-空穴迁移等挑战。研究旨在通过金属掺杂和二元氧化物体系,特别是二氧化钛,提高紫外光、可见光和太阳光下的光催化效率,二氧化钛可改善电荷载流子迁移并延迟复合。将二氧化钛与生物衍生碳耦合在增强电子-空穴分离和可见光吸收方面显示出前景。本文综述探讨了生物衍生光催化剂在光催化剂合成、降解机理、吸附反应和经济价值方面的进展,强调了光催化在高效废水处理中的潜力。