首页> 外文会议>Annual Meeting amp;amp;amp; Exhibition of The Minerals, Metals amp;amp;amp; Materials Society >Innovative Anode Coating Technology to Reduce Anode Carbon Consumption in Aluminum Electrolysis Cells
【24h】

Innovative Anode Coating Technology to Reduce Anode Carbon Consumption in Aluminum Electrolysis Cells

机译:创新的阳极涂层技术,降低铝电解细胞中的阳极碳消耗

获取原文

摘要

The aluminum reduction reactions in the Hall-Heroult process are responsible for approximately 85% of the net carbon consumption in the electrolysis cell by reaction of oxygen with the anode, producing carbon dioxide. Some of this reacts back with aluminum to produce carbon monoxide and this part is responsible for current efficiency loss. Some other anode reaction mechanisms: anode air oxidation, Boudouard reaction and carbon dust generation are responsible for excess carbon consumption. Studies have shown that to improve cell economics and reduce net carbon consumption in the cell, focus needs to be put on the quality of raw materials, improvement of the anode manufacturing process and finally protecting the anode from air oxidation. Air oxidation of the anode takes place on the upper part of the anode surface. In this paper, EGA is presenting an innovative approach to protect anodes in the cell by using thermal arc spray technology to coat prebaked anodes with aluminum. The EGA technology has shown improved penetration of aluminum in the porous surface area of the anode, which reinforces the adhesion of the aluminum coating layer, while preventing any impact on cell metal purity because the coating is pure aluminum.
机译:通过氧气与阳极反应,生产二氧化碳,霍尔 - 灌注过程中的铝氧化铝反应对电解槽中的净碳消耗的约85%的碳消耗负责。其中一些反应用铝反应以产生一氧化碳,并且该部分是对电流效率损失的原因。其他一些阳极反应机制:阳极空气氧化,Boudouard反应和碳粉尘产生负责过量的碳消耗。研究表明,为了改善细胞经济学并降低细胞中的净碳消耗,重点需要提出原材料的质量,改善阳极制造过程,最终保护阳极免受空气氧化。阳极的空气氧化在阳极表面的上部进行。在本文中,EGA通过使用热弧喷涂技术来保护电池中的阳极通过铝涂覆预烘烤的阳极,呈现一种创新方法。 EGA技术表明,铝在阳极的多孔表面区域中的铝渗透,这加强了铝涂层的粘附,同时防止涂层是纯铝的任何冲击。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号