Javed Jannat, Zhou Yuting, Ullah Saad, Gao Tianjiu, Yang Caiyun, Han Ying, Wu Hao
Hebei Key Laboratory of Heavy Metal Deep-Remediation in Water and Resource Reuse, Key Laboratory of Applied Chemistry, School of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao 066004, China.
School of International Education, Yanshan University, Qinhuangdao 066004, China.
Molecules. 2025 May 17;30(10):2194. doi: 10.3390/molecules30102194.
Emerging contaminants (ECs) in wastewater threaten environmental and human health, while conventional methods often prove inadequate. This has driven increased concern among decision makers, justifying the need for innovative and effective treatment approaches. Pyrite-derived materials have attracted great interest in advanced oxidation processes (AOPs) as catalysts because of their unique Fe-S structure, ability to undergo redox cycling, and environmental friendliness. This review explores recent advances in pyrite-derived materials for AOP applications, focusing on their synthesis, catalytic mechanisms, and pollutant degradation. It examines how pyrite activates oxidants such as hydrogen peroxide (HO), peracetic acid (PAA), and peroxymonosulfate (PMS) can be used to generate reactive oxygen species (ROS). The role of multi-dimensional pyrite architectures (0D-3D) in enhancing charge transfer, catalytic activity, and recyclability is also discussed. Key challenges, including catalyst stability, industrial scalability, and Fe/S leaching, are addressed alongside potential solutions. Future directions include the integration of pyrite-based catalysts with hybrid materials, as well as green synthesis to improve practical applications. This review provides researchers and engineers with valuable insights into developing sustainable wastewater treatment technologies.
废水中的新兴污染物(ECs)威胁着环境和人类健康,而传统方法往往被证明是不够的。这促使决策者们越来越关注,证明了需要创新和有效的处理方法。黄铁矿衍生材料因其独特的铁硫结构、进行氧化还原循环的能力和环境友好性,在作为催化剂的高级氧化工艺(AOPs)中引起了极大的兴趣。本综述探讨了黄铁矿衍生材料在AOP应用中的最新进展,重点关注其合成、催化机制和污染物降解。它研究了黄铁矿如何激活诸如过氧化氢(HO)、过氧乙酸(PAA)和过一硫酸盐(PMS)等氧化剂,以产生活性氧物种(ROS)。还讨论了多维黄铁矿结构(0D-3D)在增强电荷转移、催化活性和可回收性方面的作用。同时探讨了包括催化剂稳定性、工业可扩展性和铁/硫浸出在内的关键挑战以及潜在的解决方案。未来的方向包括将黄铁矿基催化剂与混合材料集成,以及进行绿色合成以改善实际应用。本综述为研究人员和工程师提供了关于开发可持续废水处理技术的宝贵见解。