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金属矿山 ›› 2025, Vol. 55 ›› Issue (8): 84-88.

• 矿物工程 • 上一篇    下一篇

柠檬酸二氢胆碱对电解锰的电化学行为研究 

叶昌美  李武斌  张  谊  黄  健  胡志同  吴占新    

  1. 贵州省新材料研究开发基地,贵州 贵阳 550014
  • 出版日期:2025-09-15 发布日期:2025-09-16
  • 通讯作者: 李武斌(1984—),男,正高级工程师,硕士。
  • 作者简介:叶昌美(1993—),女,工程师,硕士。
  • 基金资助:
    贵州省高层次(百层次)创新型人才项目(编号:黔科合平台人才-GCC[2023]092);贵州科学院青年科学基金项目(编号:黔科院 J 字 [2023]6 号)。 

Electrochemical Behavior Research of Dihydrocholine Citrate on Manganese Electrolysis

YE Changmei  LI Wubin  ZHANG Yi  HUANG Jian  HU Zhitong  WU Zhanxin    

  1. Guizhou New Materials Research and Development Institute,Guiyang 550014,China
  • Online:2025-09-15 Published:2025-09-16

摘要: 在电解法生产锰过程中,以 SeO2 为添加剂存在硒沉积在锰产品中,降低金属锰纯度;部分硒沉淀会堵塞 隔膜布;硒残留在电解液、阳极泥和锰渣中,处理技术要求高;昂贵 SeO2 的使用推高了电解锰的生产成本。 为寻找一 种可替代 SeO2 的节能、环保、产品纯度高的电解锰添加剂,研究以柠檬酸二氢胆碱作为添加剂,采用循环伏安、线性伏 安、电化学阻抗等电化学方法探讨了锰在 MnSO4 -(NH4 )2 SO4 -H2O 体系中的电沉积及电化学行为,并采用 XRD 对电 沉积锰产品进行了表征。 结果表明:在不锈钢阴极表面,氢气析出和锰沉积的起始电位分别为-0. 65 V、-1. 25 V;柠 檬酸二氢胆碱对析氢反应具有明显的抑制作用,当柠檬酸二氢胆碱浓度为 0. 03 g / L 情况下,析氢反应的活化能为 40. 975 kJ/ mol;在温度为 313 K、Mn 2+浓度为 30 g / L、(NH4 )2 SO4 浓度为 100 g / L、pH= 7. 0、电解电流为 2. 0 A、柠檬酸 二氢胆碱浓度为 0. 09 g / L 情况下,最大电流效率为 68. 78%,电沉积产品为 α-Mn。 

关键词: 柠檬酸二氢胆碱  锰  电沉积  析氢  循环伏安 

Abstract: In the electrolytic production of manganese,the presence of SeO2 as an additive leads to selenium deposition in the manganese product,reducing the purity of metallic manganese. Partial selenium precipitation can clog the diaphragm cloth. Selenium residues in the electrolyte,anode mud,and manganese slag,requiring high treatment technology. The use of expensive SeO2 has pushed up the production cost of electrolytic manganese. In order to find an energy-saving,environmentally friendly, and high-purity electrolytic manganese additive that can replace SeO2 ,the electrochemical deposition and electrochemical behavior of manganese in the MnSO4 -(NH4 )2 SO4 -H2O system were investigated using cyclic voltammetry,linear voltammetry, electrochemical impedance spectroscopy,and other electrochemical methods with dihydrocholine citrate as the additive. XRD was used to characterize the electrodeposited manganese product. The results showed that the initial potentials for hydrogen evolution and manganese deposition on the surface of stainless steel cathode are -0. 65 V、-1. 25 V,respectively. Dihydrogen citrate has a significant inhibitory effect on hydrogen evolution reaction. When the concentration of dihydrocholine citrate is 0. 03 g / L,the activation energy of hydrogen evolution reaction is 40. 975 kJ/ mol. At a temperature of 313 K,Mn 2+ concentration of 30 g / L,(NH4 )2 SO4 concentration of 100 g / L,pH= 7. 0,electrolysis current of 2. 0 A,and dihydrocholine citrate concentration of 0. 09 g / L,the maximum current efficiency is 68. 78%,and the electrodeposited manganese is α-Mn. 

Key words: dihydrocholine citrate,manganese,electroc-deposition,hydrogen evolution,cyclic voltammetry 

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