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350 kA电解槽降碳技术实践 被引量:2

Application of carbon reduction technology to 350 kA aluminum reduction pots
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摘要 在国电投集团绿色铝电生态集成战略下,为进一步降低碳排放,某350 kA电解系列使用石墨化阴极结合生铁浇铸技术进行技术升级。经技术升级后,系列电流提升至370 kA,电解槽平均电压3.956 V,炉底压降159 mV,炉膛情况良好。石墨化阴极电解槽在转入正常生产期后半年内平均直流电耗12695 kWh/t-Al,相比原半石墨质阴极技术降低了约194 kWh/t-Al。技术数据说明技改效果显著,且对铝行业节能及降碳工作具有一定指导意义。 Under the green aluminum ecological integration strategy of State Power Investment Corporation(SPIC),in order to further reduce carbon emissions,a 350 kA potline uses graphitized cathode combined with pig iron casting technology for technological upgrading.After technological upgrading,the potline current has been increased to 370 kA,the pot average voltage is 3.956 V,the voltage drop at pot bottom is 159 mV,and the pot cavity is in good condition.The average DC power consumption of the graphitized cathode aluminum reduction pot within six months after entering the normal production period is 12695 kWh/t-Al,which is about 194 kWh/t-Al lower than the original semi-graphitic cathode technology.The technological data indicates that the technological transformation has significant effects,with some guiding significance for energy-saving and carbon reduction work in the aluminum industry.
作者 杨丹丹 Yang Dandan(SPIC Ningxia Energy-AL Group Co.,Ltd.,Yinchuan 750004,China)
出处 《轻金属》 北大核心 2023年第9期27-30,共4页 Light Metals
关键词 绿色铝电 铝电解槽 石墨化阴极 生铁浇铸 直流电耗 碳排放 green aluminum power aluminum reduction pot graphitized cathode pig iron casting DC power consumption carbon emission
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  • 1杨晓东,周东方,刘伟.节能电解槽技术的研发和进展[J].轻金属,2011(S1):165-169. 被引量:18
  • 2孙毅,周善红.中国炭素工业生产节能减排主要技术浅析[J].轻金属,2011(S1):272-274. 被引量:12
  • 3任必军,王兆文,石忠宁,班允刚,邱竹贤.大型铝电解槽阳极开槽试验的研究[J].矿冶工程,2007,27(3):61-63. 被引量:24
  • 4http://www. world - aluminium, org/statistics/#data[ EB/OL]. 被引量:1
  • 5工信部.2013年有色金属工业经济运行情况[EB/OL].http://www. miit. gov. cn/nl 1293472/nl 1293832/nl 1294132/nl2858402/nl2858507/15891281. html. 2014 -02 -21. 被引量:1
  • 6Martin 0,Benkahla B,Toraasino T,et al. The latest developments ofALCANAS AP3X and ALPSYS technologies[ C ]. In: Morten Sorlie,eds. Light Metals 2007. Orlando, FL : TMS ( The Minerals, Metals &Materials Society) ,2007.253 -258. 被引量:1
  • 7Benkahla B, Martin 0, Tomasino T. AP50 performances and new de-velopment [ C ]. In: Geoff Beame,eds. Light Metals 2009. San Fran-cisco ,CA : TMS ( The Minerals,Metals & Materials Society ),2009.365 -370. 被引量:1
  • 8Asgeir B,Bjom E A,Albeit B,et al. HAL 4e - Hydro's new genera-tion cell technology [ C ] . In : Geoff Beame, eds. Light Metals 2009.San Francisco, CA: TMS ( The Minerals, Metals & Materials Socie-ty) ,2009.371 -375. 被引量:1
  • 9Feng Naixiang,Tian Yingfu,Peng Jianping,et al. New Cathodes in A-luminum reduction cells [ C ]. Light Metals 2010. Seattle, WA ; TMS(The Minerals,Metals & Materials Society) ,2010.405 -408. 被引量:1
  • 10Liu Fengqin, Yao Shihuan, Gu Songqing. Study on a new reductiontechnology for energy saving [ C ]. Light Metals 2010. Seattle, WA:TMS (The Minerals,Metals & Materials Society) ,2010. 387 -389. 被引量:1

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