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添加剂对铝用碳素阳极消耗的影响
引用本文:王先黔,赖延清,李庆余,杨建红,刘宏专. 添加剂对铝用碳素阳极消耗的影响[J]. 中南大学学报(自然科学版), 2000, 31(5): 411-414
作者姓名:王先黔  赖延清  李庆余  杨建红  刘宏专
作者单位:1. 中南大学冶金科学与工程系,湖南 长沙 410083
2. 广西师范大学化学化工系,广西 桂林 541004
基金项目:国家重点基础研究发展规划资助项目(G1999064903)
摘    要:铝电解生产中,碳素阳极两组分(石油焦和沥青结焦)的活性差异带来阳极的选择性氧化,是造成碳素阳极过量消耗的主要原因之一.基于阳极中杂质或添加剂对阳极活性产生的影响,作者采用分别测定石油焦和沥青结焦与CO2反应活性的实验方法,研究了AlF3及其它5种添加剂(分别用A,B,C,AlF3+C,AlF3+D代替)对二者活性的影响.结果表明,添加剂C提高了沥青结焦和石油焦的CO2反应活性;添加剂AlF3,A,B,A1F3+C及AlF3+D均可不同程度地降低沥青结焦和石油焦的CO2反应活性,并且使沥青结焦与石油焦的CO2反应活性差距缩小,使得有可能在碳阳极中采用适宜添加剂,减缓其选择性氧化,降低阳极碳耗.

关 键 词:添加剂;铝用碳素阳极;CO2;反应活性
文章编号:1005-9792(2000)05-0411-04
修稿时间:2000-02-22

Effect of additives on consumption of carbon anodes in aluminium electrolysis
WANG Xian qian,LAI Yan qing,LIU Hong zhuan,YANG Jian hong. Effect of additives on consumption of carbon anodes in aluminium electrolysis[J]. Journal of Central South University:Science and Technology, 2000, 31(5): 411-414
Authors:WANG Xian qian  LAI Yan qing  LIU Hong zhuan  YANG Jian hong
Abstract:Selective oxidation of carbon anode in aluminum electrolysis caused by reactivity difference between pitchcoke and petroleum coke is one of the main causes for excess carbon consumption. Impurities and additives in carbon an-odes may substantially affect chemical activity of the anodes. Petroleum coke and pitch binder have been doped with dif-ferent additives (represented with A, B, C, AlF3, AlF3 + C and AlF3 + D) and baked at 1 150 ℃, and reactivity of theobtained petroleum coke or pitch coke powders toward CO2 has been investigated. Results show that additive C increasesreactivity of petroleum coke and pitch coke, additives A, B, AlF3, AlF3 + C and AlF3 + D decrease reactivity of petro-leum coke and pitch coke to different degrees. But their effects on pitch binder is far more obvious than on petroleum,which means that it is possible to abbreviate selective oxidation of anodes and reduce the anode carbon consumption, par-tieularly reduce the erosion of carbon dust in aluminum electrolysis by doping earbon anodes with appropriate additives.
Keywords:additives   carbon anodes in aluminum electrolysis   CO2   reactivity
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