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金属有机框架材料用于水体系中吸附去除潜在有毒元素的性能:综述

Performance of metal-organic frameworks for the adsorptive removal of potentially toxic elements in a water system: a critical review.

作者信息

Ramanayaka Sammani, Vithanage Meththika, Sarmah Ajit, An Taicheng, Kim Ki-Hyun, Ok Yong Sik

机构信息

Ecosphere Resilience Research Center, Faculty of Applied Sciences, University of Sri Jayewardenepura Nugegoda Sri Lanka

Department of Civil & Environmental Engineering, Faculty of Engineering, The University of Auckland Auckland 1142 New Zealand.

出版信息

RSC Adv. 2019 Oct 24;9(59):34359-34376. doi: 10.1039/c9ra06879a. eCollection 2019 Oct 23.

Abstract

Elevated levels of potentially toxic elements (PTEs) in aqueous environments have drawn attention recently due to their presence and toxicity to living beings. There have been numerous attempts to remove PTEs from aqueous media. The potential of metal-organic frameworks (MOFs) in removing PTEs from aqueous media has been recognized due to their distinctive advantages (, increased removal capability, large surface area, adjustable porosity, and recyclability). Because of the poor stability of MOFs in water, pre and post synthetic modification and functionalization of MOFs have also been developed for water treatment investigations. This review addresses the performance and mechanisms of PTE removal in various modified MOFs in detail. In order to compare the performance of MOFs, here we used partition coefficient (PC) instead of maximum adsorption capacity, which is sensitively influenced by initial loading concentrations. Therefore, the PC of each material was used to evaluate the adsorption performance of different MOFs and to compare with other sorbents. Furthermore, it discusses the scale-up issues and forthcoming pathway for the research and development needs of MOFs for effective PTE removal. This review further elucidates the main removal mechanisms of PTEs by MOFs. Commercial or domestic water treatment systems or water filters can utilize engineered MOFs to treat water by adsorptive removal. However, marketable products have yet to be investigated thoroughly due to limitations of the large-scale synthesis of MOFs.

摘要

由于水环境中潜在有毒元素(PTEs)的存在及其对生物的毒性,其含量升高最近引起了关注。人们已经进行了许多从水介质中去除PTEs的尝试。金属有机框架(MOFs)因其独特的优势(提高去除能力、大表面积、可调节孔隙率和可回收性)在从水介质中去除PTEs方面的潜力已得到认可。由于MOFs在水中稳定性较差,因此也开展了MOF的合成前和合成后修饰及功能化用于水处理研究。本综述详细阐述了各种改性MOF中PTE去除的性能和机制。为了比较MOFs的性能,这里我们使用分配系数(PC)而非最大吸附容量,因为最大吸附容量受初始负载浓度影响较大。因此,每种材料的PC用于评估不同MOFs的吸附性能并与其他吸附剂进行比较。此外,还讨论了MOFs用于有效去除PTEs的研发需求的放大问题和未来发展方向。本综述进一步阐明了MOFs去除PTEs的主要机制。商业或家用水处理系统或滤水器可利用工程化MOFs通过吸附去除来处理水。然而,由于MOFs大规模合成的局限性,尚未对适销产品进行深入研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffa7/9073907/009a574e0a5f/c9ra06879a-f1.jpg

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