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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Ternary NiFeMnOx compounds for adsorption of antimony and subsequent application in energy storage to avoid secondary pollution

发布时间:2021-07-05  点击次数:

第一作者:Zhang, Xinyue

通讯作者:Liang, Qionglin Niu, Dun Sun, Hong-bin Qi, Yang

合写作者:Guo, Ying Xie, Nianyi Guo, Rongxiu Wang, Yao Hu, Ze-Nan Xu, Wenjuan Ai, Yongjian Gao, Jianyi Wang, Jiaping

发表刊物:Separation and Purification Technology

卷号:276

影响因子:8.1

DOI码:10.1016/j.seppur.2021.119237

所属单位:Department of Chemistry, Northeastern University

教研室:物理化学

刊物所在地:Netherlands

摘要:Antimony (Sb) has been widespreadly applied in industry, but it is one of the major pollutants due to the intrinsic biological toxicity. Using chemical adsorption method to recover Sb in sewage is of great value for both academic and industry research. Considering the treatment of the used-adsorbent to avoid secondary pollution, the design of adsorbent should take advantages of both good adsorption capacity and the sequential sustainability of the used adsorbent. Herein, the ternary Ni-Fe-Mn oxide compounds (NiFeMnOx) was prepared as the good adsorbent to recycle Sb. The recovered antimony-enriched waste adsorbent (NiFeMn/SbOx) was used as a supercapacitor and showed excellent energy storage performance. The NiFeMnOx has the maximum adsorption capacity of 553 mg/g for antimony. The mechanism of high adsorption capacity can be ascribed to the interaction caused by hydrogen bonding, the intercalation and inner-sphere complexation. What's more, a part of Sb(III) was detoxified to less harmful Sb(V) during the adsorption process, this also suggests the redox procedure in the adsorption. In the sequential application, the NiFeMn/SbOx based hybrid supercapacitor exhibits good performance with 108.3 mAh/g at the current density of 1 A/g even loading the highly massive active material (10 +/- 0.5 mg/cm2). This work provides a new pathway not only to exert value-addition of antimony, but also to avoid secondary pollution caused by waste adsorbents.

关键字:AdsorptionAntimonyNiFeMn composite oxideResource UtilizationSupercapacitor

论文编号:WOS:000683890200001

学科门类:理学

一级学科:化学

页面范围:119237-119247

ISSN号:1383-5866

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