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Heat balance simulation of drained aluminum reduction cell 被引量:2

Heat balance simulation of drained aluminum reduction cell
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摘要 Compared with a conventional Hall Heroult cell(H H cell), the interpolar distance of a drained cell can be reduced significantly and the cell voltage and heat produced in the electrolysis will decrease greatly as well, which makes it crucial to achieve a new heat balance in the drained cell. A half anode cathode slice model of a hypothetical drained cell retrofitted from a 160 kA currently used in H H cell was developed for the thermo electric calculation and simulation. The results were presented and analyzed and possible approaches for setting up a new heat balance in a drained cell were discussed. Compared with a conventional Hall Heroult cell(H H cell), the interpolar distance of a drained cell can be reduced significantly and the cell voltage and heat produced in the electrolysis will decrease greatly as well, which makes it crucial to achieve a new heat balance in the drained cell. A half anode cathode slice model of a hypothetical drained cell retrofitted from a 160 kA currently used in H H cell was developed for the thermo electric calculation and simulation. The results were presented and analyzed and possible approaches for setting up a new heat balance in a drained cell were discussed.
出处 《中国有色金属学会会刊:英文版》 CSCD 2003年第5期1199-1202,共4页 Transactions of Nonferrous Metals Society of China
基金 Project(G19990 64 90 3 )supportedbytheNationalKeyFundamentalResearchandDevelopmentofChina
关键词 热平衡 消耗电池 热电计算 仿真 drained cell thermal electrical calculation and simulation half anode and cathode slice model heat balance
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  • 1Huglen R, Kvande H. Global considerations of aluminium electrolysis on energy and the environment[J]. Light Metals, 1994: 373-380.
  • 2McMinn C J. A review of RHM cathode development[J]. Light Metals, 1992:419-424.
  • 3de Vittorio Nora. Cell for aluminum electrowinning[P]. US 6093304, 2000.
  • 4Sierre G B, Hardie G J, Shaw R W, et d. Aluminum production cell and cathode[P]. US 6358393, 2002.
  • 5Brown G D. TiB2 coated aluminium reduction cells:status and future direction of coated cells in Comalco[A]. Welch B. Aluminum Smelting Conference[C].Queenstown, New Zealand, 1998. 499.
  • 6Kvande H, Haupin W. Inert anodes for AI smelters:energy balances and environmental impact[J]. JOM,2001, 53(5): 29-33.
  • 7Stedmsn I G, Houston G J, Shaw R W. Aluminum smelting cells[P]. US 5043047, 1991.
  • 8Boxall L G, Gamson B W, Green J A S, et al. Low energy aluminum reduction cell with induced hath flow[P]. US 4602990, 1986.
  • 9LIU Ye-xiang. Functional Electrode Materials and Their Applications[M]. Changsha: Central South University Press, 1996. 169. (in Chinese).
  • 10de Vittorio Nora. Cell for aluminium electrowinning employing a cathode cell bottom made of carbon blocks which have parallel channels therein[P]. US 5683559,1997.

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