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席夫碱功能化金属有机骨架作为一种高效的吸附剂,用于水体重金属离子的净化。

Schiff base-functionalized metal-organic frameworks as an efficient adsorbent for the decontamination of heavy metal ions in water.

机构信息

Department of Chemistry, Punjabi University, Patiala, 147002, Punjab, India.

Department of Chemistry, Multani Mal Modi College, Patiala, 147 001, Punjab, India.

出版信息

Environ Res. 2023 Nov 1;236(Pt 2):116811. doi: 10.1016/j.envres.2023.116811. Epub 2023 Aug 2.

Abstract

Adsorptive removal of heavy metal ions from water is an energy- and cost-effective water decontamination technology. Schiff base functionalities can be incorporated into the pore cages of metal-organic frameworks (MOFs) via direct synthesis, post-synthetic modification, and composite formation. Such incorporation can efficiently enhance the interactions between the MOF adsorbent and target heavy metal ions to promote the selective adsorption of the latter. Accordingly, Schiff base-functionalized MOFs have great potential to selectively remove a particular metal ion from the aqueous solutions in the presence of coexisting (interfering) metal ions through the binding sites within their pore cages. Schiff base-functionalized MOFs can bind divalent metal ions (e.g., Pb(II), Co(II), Cu(II), Cd (II), and Hg (II)) more strongly than trivalent metal ions (e.g., Cr(III)). The adsorption capacity range of Schiff base-functionalized MOFs for divalent ions is thus much more broad (22.4-713 mg g) than that of trivalent metal ions (118-127 mg g). To evaluate the adsorption performance between different adsorbents, the two parameters (i.e., adsorption capacity and partition coefficient (PC)) are derived and used for comparison. Further, the possible interactions between the Schiff base sites and the target heavy metal ions are discussed to help understand the associated removal mechanisms. This review delivers actionable knowledge for developing Schiff-base functionalized MOFs toward the adsorptive removal of heavy metal ions in water in line with their performance evaluation and associated removal mechanisms. Finally, this review highlights the challenges and forthcoming research and development needs of Schiff base-functionalized MOFs for diverse fields of operations.

摘要

从水中吸附去除重金属离子是一种节能且经济有效的水净化技术。席夫碱官能团可以通过直接合成、后合成修饰和复合形成的方式被纳入金属有机骨架(MOF)的孔笼中。这种纳入可以有效地增强 MOF 吸附剂与目标重金属离子之间的相互作用,促进后者的选择性吸附。因此,席夫碱功能化的 MOF 具有很大的潜力,通过其孔笼内的结合位点,从存在共存(干扰)金属离子的水溶液中选择性地去除特定的金属离子。席夫碱功能化的 MOF 可以比三价金属离子(例如,Cr(III))更强烈地结合二价金属离子(例如,Pb(II)、Co(II)、Cu(II)、Cd(II)和 Hg(II))。因此,席夫碱功能化的 MOF 对二价离子的吸附容量范围比三价金属离子(118-127 mg g)要广泛得多(22.4-713 mg g)。为了评估不同吸附剂之间的吸附性能,推导并使用了两个参数(即吸附容量和分配系数(PC))进行比较。此外,还讨论了席夫碱位点与目标重金属离子之间的可能相互作用,以帮助理解相关的去除机制。本综述为开发席夫碱功能化的 MOF 以用于水中重金属离子的吸附去除提供了可行的知识,同时考虑了其性能评估和相关的去除机制。最后,本综述强调了席夫碱功能化的 MOF 在不同操作领域所面临的挑战和未来的研究和发展需求。

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