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基于锰的层状和纳米结构材料的制备:用于去除重金属的高效吸附剂。

Elaboration of Lamellar and Nanostructured Materials Based on Manganese: Efficient Adsorbents for Removing Heavy Metals.

作者信息

Amarray Amina, El Ghachtouli Sanae, Himi Mohammed Ait, Aqil Mohamed, Khaless Khaoula, Brahmi Younes, Dahbi Mouad, Azzi Mohammed

出版信息

Acta Chim Slov. 2020 Dec;67(4):1180-1195.

Abstract

The lamellar and nanostructured manganese oxide materials were chemically synthesized by soft and non-toxic methods. The materials showed a monophasic character, symptomatic morphologies, as well as the predominance of a mesoporous structure. The removal of heavy metals Cd(II) and Pb(II) by the synthesized materials Na-MnO2, Urchin-MnO2 and Cocoon-MnO2 according to the mineral structure and nature of the sites were also studied. Kinetically, the lamellar manganese oxide material Na-MnO2 was the most efficient of the three materials which had more vacancies in the MnO6 layers as well as in the space between the layers. The nanomaterials Urchin-MnO2 and Cocoon-MnO2 could exchange with the metal cations in their tunnels and cavities, respectively. The maximum adsorbed quantities followed the order (Pb(II): Na-MnO2 (297 mg/g)?Urchin-MnO2 (264 mg/g)?Cocoon-MnO2 (209 mg/g), Cd(II): Na-MnO2 (199 mg/g)?Urchin-MnO2 (191 mg/g)?Cocoon-MnO2 (172 mg/g)). Na-MnO2 material exhibited the best stability among the different structures, Na-MnO2 presented a very low amount of the manganese released. The results obtained showed the potential of lamellar manganese oxides (Na-MnO2) and nanostructures (Urchin-MnO2 and Cocoon-MnO2) as selective, economical, and stable materials for the removal of toxic metals in an aqueous medium.

摘要

层状和纳米结构的氧化锰材料通过温和且无毒的方法进行化学合成。这些材料呈现单相特征、典型形态以及介孔结构占主导的特点。还根据矿物结构和位点性质研究了合成材料Na-MnO₂、海胆状MnO₂和茧状MnO₂对重金属Cd(II)和Pb(II)的去除情况。从动力学角度来看,层状氧化锰材料Na-MnO₂是这三种材料中效率最高的,其MnO₆层以及层间空间有更多空位。纳米材料海胆状MnO₂和茧状MnO₂能够分别在其隧道和空腔中与金属阳离子发生交换。最大吸附量顺序为(Pb(II):Na-MnO₂(297 mg/g)>海胆状MnO₂(264 mg/g)>茧状MnO₂(209 mg/g),Cd(II):Na-MnO₂(199 mg/g)>海胆状MnO₂(191 mg/g)>茧状MnO₂(172 mg/g))。在不同结构中,Na-MnO₂材料表现出最佳稳定性,Na-MnO₂释放的锰量非常低。所得结果表明层状氧化锰(Na-MnO₂)和纳米结构(海胆状MnO₂和茧状MnO₂)作为在水介质中去除有毒金属的选择性、经济且稳定的材料具有潜力。

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