孙宏滨

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东北大学理学院化学系教授、博士生导师,研究领域包括电化学储能、氢能、催化化学、精细化学品合成工艺、复合纳米材料、水处理等。主持国家重点研发计划课题、国家自然科学基金等多项国家级、省部级科研项目,以及多项横向项目。在Nat. Commun., Angew. Chem.,Adv. Funct. Mater.等国内外知名期刊发表论文130余篇,授...

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Insights into adsorptive removal of antimony contaminants: Functional materials, evaluation and prospective

发布时间:2021-06-08  点击次数:

第一作者:Zhang Xinyue

通讯作者:Dun Niu, Hong-bin Sun ,Yang Yang

合写作者:Nianyi Xie, Ying Guo

发表刊物:Journal of Hazardous Materials

卷号:418

影响因子:12.2

DOI码:10.1016/j.jhazmat.2021.126345

所属单位:Department of Chemistry, Northeastern University

教研室:物理化学

刊物所在地:NETHERLANDS

摘要:The application of antimony containing compounds in the industry has generated considerable antimony contaminants, which requires to develop methods that are as efficient as possible to remove antimony from water in the view of human health. The adsorption is among the most high-efficiency and reliable purification methods for hazardous materials due to the simple operation, convenient recycling and low cost. Herein, this review systematically summarizes the functional materials that are used to adsorb antimony from water, including metal (oxides) based materials, carbon-based materials, MOFs and molecular sieves, layered double hydroxides, natural materials, and organic-inorganic hybrids. The iron-based adsorbents stand out among these adsorbents because of their excellent performance. Moreover, the interaction between antimony and different functional materials is discussed in detail, while the inner-sphere complexation, hydrogen bond as well as ligand exchange are the main impetus during antimony adsorption. In addition, the desorption methods in adsorbents recycling are also comprehensively summarized. Furthermore, we propose an adsorption capacity balanced evaluation function (ABEF) based on the reported results to evaluate the performance of the antimony adsorption materials for both Sb(III) and Sb(V), as antimony usually has two valence forms of Sb(III) and Sb(V) in wastewater. Another original insight in this review is that we put forward a potential application prospect for the antimony-containing waste adsorbents. The feasible future development includes the utilization of the recycled antimony-containing waste adsorbents in catalysis and energy storage, and this will provide a green and sustainable pathway for both antimony removal and resourization.

关键字:Antimony ,Adsorption,Waste-adsorbents ,Catalysis ,Energy storage

论文编号:WOS:000689373700007

学科门类:理学

一级学科:化学

ISSN号:0304-3894

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