Ti/Sn-SbOx/掺石墨粉-F-β-PbO2电极的制备及其电化学性能研究
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1.昆明理工恒达科技股份有限公司, 云南 昆明 650106 ;2.云南省冶金电极材料工程技术研究中心, 云南 昆明 650106 ;3.昆明理工大学冶金与能源工程学院, 云南 昆明 650093

作者简介:

张大新(1995—),男,河南潢川人,硕士,中级研发工程师,主要从事湿法冶金和节能电极材料研究。

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中图分类号:

TF803.2+7;TQ151

基金项目:

国家自然科学基金资助项目(52274409,22262017,51564029)


Preparation and electrochemical properties of Ti/Sn-SbOx/doped graphite powder-F-β-PbO2 electrode
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Affiliation:

1.Kunming Hendera Science and Technology Co., Ltd., Kunming 650106 , China ; 2.Research Center of Metallurgical Electrode Materials Engineering Technology, Kunming 650106 , China ; 3.Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093 , China

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    摘要:

    在电沉积过程中,由于电沉积液中存在氯离子、硫酸根离子等,传统铅合金阳极易被腐蚀,导致极板变薄、穿孔,寿命大幅缩短。有文献表明,钛基阳极材料具有较大的强度和强耐腐蚀性,且在电极中掺杂石墨可以增强电极的致密、坚硬的特性,进而提高其耐腐蚀性、导电性。本研究提出以钛为基体,锡锑金属氧化物作为中间层,二氧化铅作为最外层的活性层,制备一种新型电极材料,并考察二氧化铅层掺杂石墨粉和氟对阳极电化学性能的影响。结果表明,掺杂C元素使得PbO2层更加致密,当C=2g/L时,电积铜实验中槽电压达到最小值2.137V,并且其耐蚀性表现最好,样品失效时间达到了305min;掺杂F元素后,电极晶粒尺寸变化不大,当F离子添加量为0.1g/L时,电积铜试验中槽电压达到最小值2.016V,同时失效时间最长;共掺C、F要比单掺C和单掺F电沉积出来的阳极样品效果要更好,失效时间达到了337min;本研究制备的新型电极材料比传统Pb-Ca-Sn阳极的槽电压低10.3%,并且在使用过程中不需要对铅泥进行清理,本研究结果可以为金属电积过程中实现阳极的高电流效率、良好耐腐蚀性、长寿命目标提供参考。

    Abstract:

    In the process of electrodeposition, due to chlorine ions, sulphate radical ions, etc. in the electrodeposition, the traditional lead alloy anode is easily corroded, resulting in the thinning and perforation of the electrode plate, and the life-time is greatly shortened. Some literatures showed that titanium-based anode materials have greater strength and strong corrosion resistance, and the doping of graphite in the electrode can enhance the dense and hard characteristics, thereby improving its corrosion resistance and conductivity. This study proposes to prepare a new type of electrode material with titanium as the substrate, tin antimony metal oxide as the intermediate layer, and lead dioxide as the outermost active layer, and investigation the effect of graphite powder and fluorine doped in the lead dioxide layer on the electrochemical properties of anode. The results showed that doping C element makes the PbO2 layer more dense. When C=2g/L, the cell voltage in the electrolytic copper experiment reaches the minimum value of 2.137V, and its corrosion resistance is the best, and the sample failure time reaches 305min; after doping F element, the size of the electrode grain does not change much, and when the addition amount of F ion is 0.1g/L, the cell voltage in the electrolytic copper test reaches the minimum value of 2.016V, and the failure time is the longest; the effect of co-doping C and F is better than single-doping C and single-doping F, and the failure time reaches 337min. The cell voltage of the new electrode material prepared is 10.3% lower than that of the traditional Pb-Ca-Sn anode, and there is no need to clean the lead mud during use. The results can provide a reference for the goal of high current efficiency, good corrosion resistance and long life of the anode in the process of metal electrolys.

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张大新, 单汝恒, 袁壮, 等. Ti/Sn-SbOx/掺石墨粉-F-β-PbO2电极的制备及其电化学性能研究[J].中国有色冶金,2025,54(5):92-104.

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  • 收稿日期:2025-04-02
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  • 在线发布日期: 2025-12-18
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