Alam Easar
School of Environmental Engineering, Xuzhou University of Technology Xuzhou 221018 Jiangsu P.R. China
RSC Adv. 2025 Jun 16;15(25):20281-20308. doi: 10.1039/d5ra02420j. eCollection 2025 Jun 10.
Arsenic is one of the most common groundwater contaminants causing serious environmental and health problems worldwide. Arsenic remediation using metal-organic frameworks (MOFs) offers a promising approach for arsenic removal owing to their structural tunability, adjustable pore size, and large surface area. This review explores the adsorption mechanisms, versatile functionality, and dimensionality of MOFs, highlighting their potential for arsenic removal. Various synthesis techniques, arsenic adsorption efficiencies, mechanisms, pH dependencies, adsorption isotherms, and adsorption kinetic models are examined in the context of MOFs used for arsenic removal. Functionalized and hybrid MOFs further improve the adsorption performance and selectivity toward arsenic removal synergetic interactions. The review also discusses the key factors influencing the performance of MOFs, which include pH, competing ions, isotherms, and kinetic models. Despite their advantages, challenges such as hydrolytic stability, scalability, and high cost limit the wide-ranging application of MOFs. However, with advancements in synthesis techniques, structural modifications and integration into practical water treatment systems, MOFs can provide a sustainable and large-scale solution for arsenic removal. This review provides an overview of the recent progress of MOFs in the field of arsenic remediation and suggests some future directions for their further improvement in practical applicability under real-world conditions.
砷是全球范围内最常见的地下水污染物之一,会引发严重的环境和健康问题。使用金属有机框架(MOF)进行砷修复是一种很有前景的除砷方法,因为它们具有结构可调性、孔径可调节性和大表面积。本综述探讨了MOF的吸附机制、多功能性和维度,突出了它们在除砷方面的潜力。在用于除砷的MOF背景下,研究了各种合成技术、砷吸附效率、机制、pH依赖性、吸附等温线和吸附动力学模型。功能化和杂化MOF通过协同相互作用进一步提高了吸附性能和对除砷的选择性。综述还讨论了影响MOF性能的关键因素,包括pH、竞争离子、等温线和动力学模型。尽管MOF具有优势,但诸如水解稳定性、可扩展性和高成本等挑战限制了它们的广泛应用。然而,随着合成技术的进步、结构修饰以及与实际水处理系统的整合,MOF可以为除砷提供可持续的大规模解决方案。本综述概述了MOF在砷修复领域的最新进展,并提出了一些未来方向,以在实际条件下进一步提高其实际适用性。