期刊文献+

400 kA铝电解槽炉帮再生技术的应用 被引量:1

Application of Furnace Side Regeneration Technology of 400 kA Aluminum Reduction Cell
下载PDF
导出
摘要 规整的炉帮是铝电解槽取得良好经济指标和较长槽寿命的关键因素。在生产过程中,炉帮随着槽龄增长或因管理不善出现侵蚀、破损,进而影响铝电解槽的电流效率和电解槽的安全生产。本文从电解质体系、炉帮破损机理以及炉帮建立条件等几个方面分析了电解槽炉帮再生的可行性,并以槽况不稳定、侧部部分位置炉帮较薄或没有炉帮的电解槽为试验槽,提出了实际操作方案,比对了炉帮再生前后炉帮厚度、电压、电流效率及全槽散热孔温度的变化情况。炉帮再生后,A、B面炉帮平均厚度分别由之前的3 cm和7 cm增加至9 cm和13 cm,且之前没有炉帮的位置也形成了比较理想的炉帮,散热孔温度整体降低,电解槽运行逐步平稳,槽运行电压明显降低,电流效率也随之提高。 Regular furnace side is the key factor for aluminum reduction cells to achieve good economic indicators and long cell life.In the production process,the furnace side is eroded and damaged with the increase of cell age or due to poor management,which further affects the current efficiency of aluminum reduction cells and the safe production of aluminum reduction cells.In this paper,the feasibility of the regeneration of the electrolytic cell furnace side was analyzed from the aspects of the electrolyte system,the damage mechanism of the furnace side and the conditions for the establishment of the furnace side.Taking the electrolytic cell with unstable cell condition,thin furnace side or no furnace side as the test cell,the practical operation scheme was put forward,and the changes of the furnace side thickness,voltage,current efficiency and the temperature of the cooling hole in the whole cell before and after the furnace side regeneration were compared.After the regeneration of the furnace side,the average thickness of the furnace side A and B increased from the previous 3 cm and 7 cm to 9 cm and 13 cm,respectively,and an ideal furnace side was formed in the position where there was no furnace side before.The temperature of the cooling hole decreased,the operation of the electrolytic cell was gradually stable,the running voltage of the cell was obviously reduced,and the current efficiency was also improved.
作者 李成元 李文超 张宁 李建卫 LI Chengyuan;LI Wenchao;ZHANG Ning;LI Jianwei
出处 《绿色矿冶》 2023年第3期31-35,共5页 Sustainable Mining and Metallurgy
关键词 铝电解槽 炉帮 再生 电解质体系 分子比 aluminum reduction cell furnace side regeneration electrolyte system molecular ratio
  • 相关文献

参考文献6

二级参考文献11

  • 1王绍鹏.280kA电解槽炉帮、伸腿管理[J].轻金属,2004(7):27-32. 被引量:3
  • 2刘建新.预焙阳极电解槽炉底破损的修补及维护方法[J].轻金属,2005(5):27-29. 被引量:1
  • 3田应甫.大型预焙铝电解槽生产实践[M].长沙:中南工业大学出版社,2005,189. 被引量:5
  • 4[威]K.格罗泰姆,H·克望德主编.邱竹贤.王家庆等译.铝电解导论[J].轻金属编辑部,1994(9):146. 被引量:1
  • 5赵无畏.关于铝电解槽寿命的综合技术研究[C].第四界铝电解专业委员会2001年年会暨学术交流会论文集.2001.5:67. 被引量:2
  • 6李劼,丁凤其,赖延清,刘业翔.我国大型预焙铝电解槽槽寿命明显低于自焙槽铝电解槽槽寿命的原因分析[C].第四届铝电解专业委员会2001年年会暨学术交流论文集,58-60. 被引量:1
  • 7王汝良.大型预焙阳极电解槽的理论设计及验证[C].第四界铝电解专业委员会2001年年会暨学术交流会论文集.2001.5:30. 被引量:1
  • 8邱竹贤.预焙槽炼铝[M].冶金(第三版).工业出版社.2005:33. 被引量:1
  • 9青铝人.现代大型预焙槽生产技术[M].沈阳:东北大学出版社,1995. 被引量:10
  • 10梁学民,张松江.现代铝电解生产技术与管理[M].长沙:中南大学出版社,2012. 被引量:1

共引文献8

同被引文献2

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部