期刊文献+

大中型预焙铝电解槽的开发与应用 被引量:2

Development and Application of Large and Medium-Size Prebaked Aluminum Electrolytic Cells
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摘要 重点描述了大中型预焙铝电解槽开发所要解决的主要技术问题,并就设计采用的新技术、新材料及其工艺技术特点进行了讨论。同时,介绍了各类大中型预焙铝电解槽对应的系列经济规模。 Main technical problems to be solved in development of large and medium - size prebaked aluminum electrolytic cells were described, and new technology, new material adopted in the design and its technical characteristics were discussed. Series economic scale corresponded with all types of large and medium - size prebaked aluminum electrolytic cell was also introduced.
作者 刘长松
出处 《有色金属设计》 2009年第1期13-18,共6页 Nonferrous Metals Design
关键词 电解槽 物理场 点式下料 母线配置 内衬结构 Electrolytic cell, physical field, point feeding, bus configuration, lining structure
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同被引文献16

  • 1廖贤安,姚世焕,韦涵光.采用优质阴极碳块开发大型高效节能长寿铝电解槽[J].轻金属,2006(1):34-36. 被引量:5
  • 2胡兴军.我国铝业发展现状的探讨[J].轻金属,2007(2):3-6. 被引量:9
  • 3马历乔.铝电解用石墨化阴极的国外专利技术综述[J].炭素,2007(1):30-36. 被引量:3
  • 4崔旭东.铝电解技术研究及发展方向探讨[J].轻金属,2007(6):1-4. 被引量:6
  • 5Mannweiler U,Fischer W K,Perruchoud R C.Carbon products:a major concern to aluminum smelters[C]//Beame G.LightMetals 2009.Warrendale:TMS,2009:909-911.
  • 6Solheim A,Moxnes B P,Vamraak K,et al.Energy recovery andamperage increase in aluminium cells by active cooling of theanode yokes[C]//Beame G.Light Metals 2009.Warrendale:TMS,2009:1091-1096.
  • 7Akuzawa1 N,Chiwata1 M,Hagiwara M,et al.Resistivitychange of cathode graphite during and after electrolysis inalumina molten salt[C]//Beame G.Light Metals 2009.Warrendale:TMS,2009:1117-1121.
  • 8QI Xi-quan,MA Shao-xian,WANG De-quan,et al.Liningmaterials and their arrangement for longer life of aluminumreduction cells[C]//Beame G.Light Metals 2009.Warrendale:TMS,2009:1159-1162.
  • 9Kvande H.Development of aluminum production capacity in themiddle east and siberia[C]//David H D.Light Metals 2008.NewOrleans:TMS,2008:375-378.
  • 10Wang A,Skybakmoen E,Grande T.Spent Si3N4 Bonded SiCsidelining materials in aluminium electrolysis cells[C]//Beame G.Light Metals 2009.Warrendale:TMS,2009:353-358.

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