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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Electrodeposited birnessite thin film: An efficient eco-friendly sorbent for removing heavy metals from water
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Electrodeposited birnessite thin film: An efficient eco-friendly sorbent for removing heavy metals from water

机译:电沉积的Birniedite薄膜:一种高效的环保吸附剂,用于从水中除去重金属

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Sorption is an efficient process for transferring heavy metals from polluted water to solid phase. Birnessite, which is a non-toxic layered manganese oxide, is particularly interesting for this objective due to its high sorption capacities towards heavy metals. In this paper, pure and nanostructured birnessite was synthesized as adherent thin films onto a solid substrate by electrochemistry with different characteristics for high sorption (e.g. mass, Average Oxidation States of Mn (AOS)). Sorption of lead (Pb (II)) and cadmium (Cd (II)) by these films was studied in terms of pH, ionic strength, sorption isotherm and kinetic order. The birnessite thin film with the highest AOS after synthesis (3.76) presents significant adsorption capacity for Pb (II) (538 mg-Pb/g) and Cd (II) (254 mg-Cd/g). A total decontamination at room temperature without filtration and energy input was obtained on model solutions and real effluents by increasing only the number of samples or the surface of electrodeposited birnessite on one sample. These birnessite thin films appear as very interesting eco-friendly sorbents for eliminating Pb (II) and Cd (II) from polluted aquatic media due to their easy synthesis and optimization process, and the possible reuses by efficient desorption in very low-cost conditions.
机译:吸附是将重金属从污染水转移到固相的有效方法。由于其对重金属的高吸附能力,这一目标是一种无毒层状氧化锰的Birniedite对该目的特别有趣。在本文中,通过电化学在固体基质上合成纯和纳米结构的Birneryite通过电化学,具有高吸附的不同特征(例如,Mn(AOS)的平均氧化状态)。在pH,离子强度,吸附等温线和动力学顺序中研究了这些薄膜的铅(Pb(II))和镉(CD(II))的吸附。合成后,具有最高AOS的Birnerite薄膜(3.76)具有Pb(II)(538mg-Pb / g)和Cd(II)(254mg-Cd / g)的显着吸附能力。通过仅在一个样品上仅增加模型溶液和实际流出物,在型号溶液和实际流出物中获得室温的总净化。这些Birnerityite薄膜由于其易于合成和优化过程而消除了来自污染水生介质的PB(II)和CD(II)的非常有趣的环保吸附剂,以及通过在非常低成本的条件下有效解吸的可能重复使用。

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