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多极性镁电解槽技术的应用与发展

The application and development of multipolarity magnesium reduction cell technology
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摘要 近年随着国内诸多海绵钛厂的投产运行,海绵钛市场竞争日趋激烈,为争取市场主动性,降低海绵钛生产成本。在还原、蒸馏段技术相当的情况下,改进镁电解生产技术越来越引起了各厂家的重视。引进多级性镁电解技术应用于镁电解生产,也成为越来越多的生产厂家的共识。多级性镁电解技术是一种十分高效的电解技术,其中所涉及到的科技也是很先进的,近些年来,已受到国内海绵钛生产厂家的青睐,得到了广泛的应用。因此了解多级性电解槽技术的重要影响因素和相关控制指标,为我国在今后镁电解生产应用过程中提供参考。 In recent years, with many domestic titanium sponge plant put into operation, titanium sponge increasingly competitive market, the market for the initiative to reduce the cost of production of titanium sponge. Under reducing distillation technology segment being equal, improved magnesium electrolytic production technology increasingly attracted the attention of the manufacturers. The introduction of multi-stage magnesium electrolysis technology used in the electrolytic production of magnesium, has also become a growing consensus manufacturers. Multi-stage magnesium electrolysis technology is a very efficient electrolysis technology, which involved science and technology is very advanced in recent years, has been the domestic titanium sponge manufacturers favor, has been widely used. Therefore, understanding the important factors of multi-level cell technology and associated control indicators for our future reference in the electrolytic production of magnesium application process.
出处 《世界有色金属》 2016年第5期87-88,共2页 World Nonferrous Metals
基金 昆明市科技计划项目“7.5t“I”型炉蒸馏全联锁自动化控制技术联合开发”(2014-04-A-H-02-3108).
关键词 多极性镁电解槽 应用与发展 影响因素 控制指标 优势 multi-polar electrolytic magnesium cells application and development factors control indicators advantage
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二级参考文献4

  • 1苏联许可证设备.无隔板电解槽[Z].1987.
  • 2《镁冶炼》[Z].抚顺铝厂教育培训处编.1995.
  • 3大型无隔板镁电解氯气回收浓度原始记录[Z].1993-2006.
  • 4大型无隔板镁电解技术操作规程[z].1997.

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