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MOF材料在水環境污染物去除方面的應用現狀及發展趨勢(I)

Review of application of MOF materials for removal of environmental pollutants from water (I)

  • 摘要: 金屬有機骨架(Metal-organic frameworks,MOFs)是一類有機?無機雜化材料,通常是指金屬離子或金屬簇與含氮、氧剛性有機配體通過自組裝過程形成的功能性多孔材料。MOF材料具有豐富的可設計的結構類型、可調控的化學功能、低密度的骨架、超高的比表面積,以及可功能化的永久的孔空間,在氣體存儲與分離、催化、傳感、藥物運輸與緩釋等領域都有廣泛的應用潛力。近年來,MOF及其復合材料已經被應用于多種污染物的去除。本文對近年來MOF材料去除水環境中重金屬、有機物的相關研究進行了總結與評述。本篇是該主題的第一篇,主要針對MOF材料在水體重金屬污染物去除方面的研究進行論述。通過對以往的研究分析可知,MOF材料對常見重金屬Pb2+、Cu2+、Cd2+、Co2+、Ag+、Cs+、Sr2+、Hg(II)以及 \rmTcO_4^ - 、Se(VI)、As(III)、As(V)均具有高效吸附性能,甚至部分MOF材料的吸附性能遠高于傳統吸附材料。主要的吸附機理包括:靜電引力、配位/螯合作用、離子交換作用、孔道吸附(物理吸附)等。最后,基于以往的研究成果對未來的研究趨勢進行了展望。

     

    Abstract: Metal-organic frameworks (MOFs) are a class of organic–inorganic hybrid functional materials that are generally formed via the self-assembly of metal ions or metal clusters and rigid organic ligands with nitrogen and oxygen atoms. A wide range of potential applications for MOF materials includes gas storage and separation, catalysis, sensing, and drug transportation and release, which is attributable to their versatile designable structures, modifiable chemical functionality, low-density frameworks, large specific surface areas, and functional and permanent pore space. In the past decade, MOFs and their composite materials have also been employed to remove various contaminants from the environment. This paper presented the significant research progress and outcomes achieved using MOF materials in the removal of environmental pollutants from water, based on a review of related studies regarding the removal of heavy metals and organic pollutants from water environments. This represented the first part of a larger paper in which the progress of MOF materials research was presented with respect to the removal of heavy metals from aqueous solution. The presence of heavy metals in water is a global environmental issue that has been receiving considerable attention worldwide. According to previous research reports, MOF materials have high adsorption capacities for common heavy metals, such as Pb2+, Cu2+, Cd2+, Co2+, Ag+, Cs+, Sr2+, Hg(II), \rmTcO_4^ - , Se(VI), As(III), and As(V). Some MOF materials have even higher adsorption capacities than conventional adsorbent materials. The adsorption mechanism mainly involves electrostatic attraction, coordination/chelation, ion exchange, and pore adsorption (physical adsorption). Based on a review of previous studies, it is believed that the future research field includes but is not limited to the following: (1) the structure–activity relationship between the MOF structure and heavy-metal removal, (2) the functionalization, surface modification, and pore size adjustment technology of MOF, or the preparation of composite MOF materials, (3) further study of the regulation of the defect structures of MOFs to develop new MOF materials with higher adsorption efficiency, (4) improving the recyclability of MOF materials, and (5) developing new MOF materials with high structural stability, high adsorption capacities, high selectivity, low cost, and which are easily reused.

     

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