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10 kA稀土电解槽通电方式对熔盐电解影响数值仿真

刘萍 吕招东

有色金属科学与工程2025,Vol.16Issue(3):376-385,10.
有色金属科学与工程2025,Vol.16Issue(3):376-385,10.DOI:10.13264/j.cnki.ysjskx.2025.03.006

10 kA稀土电解槽通电方式对熔盐电解影响数值仿真

Numerical simulation of the influence of 10 kA rare earth electrolyzer electrification mode on molten salt electrolysis

刘萍 1吕招东2

作者信息

  • 1. 江西理工大学经济管理学院,江西 赣州 341000
  • 2. 铜陵有色金属集团股份有限公司金新铜业分公司,安徽 铜陵 244000
  • 折叠

摘要

Abstract

The 10 kA rare earth electrolyzer is the most widely used type in the enterprise at present.Based on a 10 kA rare earth electrolyzer in a certain research institute,the electrolyzer was studied through the electrothermal coupling simulation module of the commercial software COMSOL.It was found that the original structure had the problem of uneven current distribution in the electrolysis process.In order to solve the problem of low electrolysis efficiency caused by uneven current distribution under the original conductive plate structure,a new conductive plate structure scheme was proposed.Meanwhile,since the 10 kA groove is not centrosymmetrically distributed,and the final current flowing into the electrolyte should be controlled at about 10 kA,according to the size of the incoming current,the following four structures were determined,namely,original structure type,current splitting type,current 2332 distribution type and current 1441 distribution type.According to the simulation results,the current density in the tank is the highest and the potential difference between the tank cover plate and the electrolyte is the smallest when the current 2332 is distributed.The current density of the original structure is the lowest,and the potential difference between the cover plate and the electrolyte is the highest.

关键词

万安级稀土电解槽/结构优化/通电方式/数值仿真模拟/电热场耦合

Key words

10 000 ampere rare earth electrolyzer/structure optimization/power mode/numerical simulation/electric field coupling

分类

矿业与冶金

引用本文复制引用

刘萍,吕招东..10 kA稀土电解槽通电方式对熔盐电解影响数值仿真[J].有色金属科学与工程,2025,16(3):376-385,10.

有色金属科学与工程

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