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Selective Capacitive Removal of Pb from Wastewater over Biochar Electrodes by Zinc Regulation.

作者信息

Wu Yangfeng, Feng Haopeng, Tang Jing, Yang Zhenhao, Lan Chenrui, Guo Yuyao, Tang Lin

机构信息

College of Environmental Science and Engineering, Hunan University, Changsha, 410082, China.

Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha, 410082, China.

出版信息

Small. 2024 Jul;20(28):e2311401. doi: 10.1002/smll.202311401. Epub 2024 Feb 13.

Abstract

Biochar materials have shown great potential for broad catalytic application. However, using these materials in the capacitive deionization technology (CDI) system for heavy metal removal still faces a significant challenge due to their low specific capacity and removal capability. Here, a comprehensive regulation on the interfacial/bulk electrochemistry of biochar by Zn doping is reported, which suggests a high renewable capacity (20 mg g) and outstanding selective capacitive removal ability (SCR) of Pb from leachate. The SCR efficiency of Pb is as high as 99% compared to K (8%), Na (13%), and Cd (37%). This work proves that the doped Zn on the biochar can combine with OH generated by water splitting to form M─OH bonds, which is beneficial for improving the specific capacity. Significantly, the relationship between double-layer capacitance and pseudo-capacitance can also be optimized by regulating the content of Zn, leading to different removal abilities of heavy metals. Therefore, this work offers insights into charge-storage kinetics, which provide valuable guidelines for designing and optimizing the biochar electrode for broader environmental applications.

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