首页> 外文会议>Annual Conference of Metallurgists >(592917) ENGINEERING AND PRODUCTION PRACTICE OF DOUBLE BOTTOM-BLOWING CONTINUOUS COPPER SMELTING PROCESS WITH 'THREE CONNECTED FURNACES' ARRANGEMENT
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(592917) ENGINEERING AND PRODUCTION PRACTICE OF DOUBLE BOTTOM-BLOWING CONTINUOUS COPPER SMELTING PROCESS WITH 'THREE CONNECTED FURNACES' ARRANGEMENT

机译:(592917)双层吹风连续铜冶炼工艺的工程和生产实践,“三衔接炉”布置

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With the ongoing development of copper smelting technology, the improvement of environmental emission control and achieving an automated continuous copper pyrometallurgical process have become the key development goals for copper smelting. The double bottom blowing continuous copper smelting process combine bottom blowing smelting (SKS) and bottom blowing converting (BCC) process and fire refining as “three-connected furnaces” arrangement is a pyrometallurgical process independently developed by China's ENFI which can continuously produce copper from raw material through to anodes. This technology can improve energy efficiency and reduce environmental emissions for the overall copper smelting and converting process. This paper discusses the engineering characteristics and production practice of the SDIC Jincheng Metallurgical Project, which operates SKS smelting and BCC converting process with “three-connected furnace” arrangement for the first time in the world. Advanced engineering concepts and tools were used to optimize the configuration during the project engineering stage. The operation shows that the process has good environmental performance, reduced energy consumption and high level of automation, which is a new choice for copper continuous smelting process.
机译:随着铜冶炼技术的持续发展,环境排放控制的改善和实现自动连续铜的高铜冶金工艺已成为铜冶炼的关键发展目标。双底吹铜冶炼过程结合了底部吹熔渣(SKS)和底部吹吹气转换(BCC)工艺和火质精制,作为“三连接炉”布置,是由中国的ENFI独立开发的热算法过程,可以连续生产从原始的铜材料通过阳极。该技术可以提高能效,降低整体铜冶炼和转化过程的环境排放。本文讨论了SDIC金城冶金项目的工程特性和生产实践,其在世界上第一次运营SKS冶炼和BCC转换过程,并在世界上第一次进行“三架炉”安排。高级工程概念和工具用于在项目工程阶段期间优化配置。该操作表明,该过程具有良好的环境性能,降低能耗和高度自动化,这是铜连续冶炼过程的新选择。

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