期刊文献+

铝电解阳极气泡行为研究进展 被引量:13

Research Progress of Anode Bubble Behavior in Aluminum Electrolysis
在线阅读 下载PDF
导出
摘要 阳极气泡的行为影响铝电解过程的传质传热,增加了电解质的电压降,影响电流密度分布。本文从物理模型、实验室电解槽和数学模型三个方面综述了铝电解中阳极气泡行为的研究进展,指出了各种模型的优缺点以及今后的发展方向。 The behavior of anode bubble has a significant influence on the transfer of mass and heat in aluminum electrolysis, it also increases the voltage of electrolyte and affects the distribution of current density, This paper summarizes the research progress of anode bubble behavior in aluminum electrolysis from three aspects: physical model, laboratory scale cell and mathematical model. The advantage and disadvantage of each model and the future research direction were pointed out.
出处 《轻金属》 CSCD 北大核心 2007年第5期27-31,共5页 Light Metals
基金 国家重点基础研究发展规划项目(2005CB623703)
关键词 铝电解 阳极气泡 物理模型 实验室电解槽 数学模型 aluminum electrolysis anode bubble physical model laboratory scale cell mathematical model
  • 相关文献

参考文献31

  • 1周乃君,夏小霞.电解质运动研究进展及其对导流槽流场研究的指导[J].轻金属,2004(12):26-30. 被引量:7
  • 2Solheim A, Johansen S T, Rolseth S , et al. Gas Driven Flow in Hall- Heroult Cells [A]. Light Metals, 1989:245 -252.
  • 3Fortin. S, Kingston. Ont, Gerhardt. M, et al. Physical Modelling of Bubble Behaviottr and Gas Release From Aluminum Reduction Cell Anodes[J]. Light Metals, 1984 : 721 - 741.
  • 4Shekhar. R, Evans. J.W. Modeling Studies of Electrolyte Flow and Bubble Behavior in Advanced Hall Cells [J]. Light Metals, 1990 : 243 - 248.
  • 5Shekhar. R, Evans. J.W. Physical Modeling Studies of Electrolyte Flow Due to Gas Evolution and Some Aspects of Bubble Behavior in Advanced Hall Cells: Part I. Flow in Cells With a Flat Anode. Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, v 25, n3, Jun 1994, p 333 - 340.
  • 6Shekhar. R, Evans. J.W. Physical Modeling Studies of Electrolyte Flow Due to Gas Evolution and Some Aspects of Bubble Behavior in Advanced Hall Cells: Part II. Flow and Inter-polar Resistance in Cells With a Grooved Anode. Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, v 25, n 3, Jun 1994, p 341-349.
  • 7Shekhar. R, Evans. J.W. Physical Modeling Studies of Electrolyte Flow Due to Gas Evolution and Some Aspects of Bubble Behavior in Advanced Hall Cells: Part III. Predicting the Performance of Advanced Hall Cells. Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, v 27, n 1, Feb 1996, p 19- 27.
  • 8A. Solheim, J. Thonstad. Model Cell Studies of Gas Induced Resistance in Hall- Heroult Cells[J]. Light Metals, 1986:397-402.
  • 9Solheim. A, Thonstad. J. Model Experiments of Mass Transfer at the Electrolyte-gas Interface in Aluminium Cells [J]. Light Metals, 1987: 239- 245.
  • 10Solheim A, Johansen S. T, Rolseth S, et al. Gas Induced Bath Circulation in Aluminium Reduction Cells. Journal of Applied Electrochemistry, v 19, n 5, Sep, 1989, p 703-712.

二级参考文献25

  • 1铁军,韩至成,邱竹贤,孙挺.铝电解中阳极气泡形成的电化学研究[J].有色金属,1996,48(1):44-48. 被引量:7
  • 2R Shekhar, J W Evans. Physical modeling studies of electrolyte flow due to gas evolution and some aspects of bubble behavior in advanced Hall ceils: Part Ⅱ. Flow and interpolar resistance in cells with a grooved anode. Metallurgical and Materials Transactions B, 1994,25(3): 341-349.
  • 3R Shekhar, J W Evans. Physical modeling studies of electrolyte flow due to gas evolution and some aspects of bubble behavior in advanced hall cells: Part Ⅲ. Predicting the performance of advanced hall cells. Metallurgical and Materials Transactions B, 1996, 27 (1):19-27.
  • 4W E Wahnsiedler. Hydrodynamics modeling of commerce Hall - Heroult cells. Light Metals, 1987 : 269 - 287.
  • 5M Segatz, etc. Modeling transient magneto - hydrodynamics phenomena in Hall - Heroult cell. Light Metals, 1993 : 361 - 368.
  • 6J M Purdie, etc. Impact of anode gas evolution on electrolyte flow and mixing in aluminum electrowinning cells. Light Metals, 1993 : 355 - 360.
  • 7M M Bilek, etc. Modelling electrolyte flow and its related transport processes in aluminum reduction cells. Light Metals, 1994: 323 - 331.
  • 8Ore Kobbeltvedt, etc. On the bath flow, alumina distribution and anode gas release in aluminum cells. Light Metals, 1997: 369- 376.
  • 9E Dernedde, etc. Gas induced circulation in an aluminum reduction cell. Light Metals, 1975 : 111 - 123.
  • 10S Fortin, etc. Physical modelling of bubble behaviour and gas release from aluminum reduction cell anodes. Light Metals, 1984:721 - 741.

共引文献15

同被引文献115

引证文献13

二级引证文献38

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