侯宏英, 贾彦鹏, 李俊凯, 兰建, 陈方淑. 石墨烯生产废液中双球状碳酸锰的提取及其电化学储锂性能[J]. 有色金属科学与工程, 2024, 15(1): 8-14. DOI: 10.13264/j.cnki.ysjskx.2024.01.002
引用本文: 侯宏英, 贾彦鹏, 李俊凯, 兰建, 陈方淑. 石墨烯生产废液中双球状碳酸锰的提取及其电化学储锂性能[J]. 有色金属科学与工程, 2024, 15(1): 8-14. DOI: 10.13264/j.cnki.ysjskx.2024.01.002
HOU Hongying, JIA Yanpeng, LI Junkai, LAN Jian, CHEN Fangshu. Extraction and electrochemical lithium storage performances of double-spheroid manganous carbonate from graphene production waste effluent[J]. Nonferrous Metals Science and Engineering, 2024, 15(1): 8-14. DOI: 10.13264/j.cnki.ysjskx.2024.01.002
Citation: HOU Hongying, JIA Yanpeng, LI Junkai, LAN Jian, CHEN Fangshu. Extraction and electrochemical lithium storage performances of double-spheroid manganous carbonate from graphene production waste effluent[J]. Nonferrous Metals Science and Engineering, 2024, 15(1): 8-14. DOI: 10.13264/j.cnki.ysjskx.2024.01.002

石墨烯生产废液中双球状碳酸锰的提取及其电化学储锂性能

Extraction and electrochemical lithium storage performances of double-spheroid manganous carbonate from graphene production waste effluent

  • 摘要: 根据“双碳”目标和循环经济的要求, 废弃物务必应收尽收。鉴于此,以Na2CO3为沉淀剂,通过一步化学沉淀反应从石墨烯生产废液中提取了淡黄色MnCO3粉末,并研究其电化学储锂性能。结果表明,废液中Mn离子的去除率为99.9%,MnCO3粉末的回收率为92.6%。MnCO3粉末由0.5~1.5 μm的双球状颗粒组成,属于六方晶系;MnCO3负极在0.5 A/g 和1.0 A/g分别循环300圈后,其可逆放电容量分别为570 mAh/g和418 mAh/g。本文的研究结果为回收石墨烯工业废水提供了新思路,有助于降低环境污染排放。

     

    Abstract: According to the “double carbon” targets and circular economy, various wastes must be recycled as much as possible. Therefore, manganous ions in the waste effluent from graphene production were extracted with Na2CO3 as the precipitation agent by one-step chemical reaction, forming light yellow MnCO3 powder. Meanwile, its electrochemical lithium storage properties were studied. The results show that the removal rate of manganous ions is 99.9% and the recovery rate of MnCO3 is 92.6%. The extracted MnCO3 powders consist of many double spheroids with a particle size of 0.5-1.5 μm, which belong to the hexagonal crystalline. After cycling for 300 cycles at 0.5 A/g and 1.0 A/g, the corresponding reversible capacity is maintained at about 570 mAh/g and 418 mAh/g, respectively. This article provides a new idea for the recovery of graphene industrial wastewater, helping to reduce environmental emissions.

     

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