首页> 外文会议>Annual Conference of Metallurgists >(582991) TECHNOLOGICAL ADVANCES IN THE ELECTROLYTIC CELL, MAINTENANCE AND REPLACEMENT
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(582991) TECHNOLOGICAL ADVANCES IN THE ELECTROLYTIC CELL, MAINTENANCE AND REPLACEMENT

机译:(582991)电解细胞,维护和更换技术进步

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Electrolytic cells are used in electrowinning (EW) and electrorefining (ER) of non-ferrous metals such as zinc and copper, and are a critical part of the purification process. The cell is a large basin and has an electrolyte or aqueous solution, an anode and a cathode, an insulator, and incoming high amperage. Cells are exposed to unfavourable internal and external factors that have a direct impact on their lifespan. Their deterioration can be caused by incorrect polarity, insufficient magnitude, their construction, tension stress, thermal shock, corrosion and other, and their maintenance and replacement can be time-consuming, costly, difficult and environmentally unsafe. Occupational health hazards and dangers posed by the maintenance and removal of the cell should also be taken into consideration. Modifying the design and fabrication method of the cell, using chemical-resistant reinforcement, and increasing tensile and mechanical strength will defer maintenance for a very long time. This can be achieved by a double hull system that comprises full-length composite reinforcement, polymer concrete reinforced with fiberglass pultruded rods and rebars, fiberglass structural layers, and special resin matrices. This will provide protection against thermal shocks, corrosion, leakage, cracks. The design of this cell incorporates a lifting system that will afford quick and easy install without having to move a great number of cells in close proximity, since it is strong enough to stand on its own and not have to be bonded to adjacent cells. As well, the cell can be anchored with ease as it remains stable. This is especially important because space is limited to lift and manoeuver between the cell and the double-girder overhead travelling cranes. The lifting system can also prevent electrocution and loss in product quality, while increasing efficiency and safety in the workplace. Considerable savings in terms of production downtime are also part of the equation.
机译:电解细胞用于电滤网(EW)和电核(ER)和诸如锌和铜等有色金属的电气化(ER),并且是纯化过程的关键部分。细胞是一个大盆,具有电解质或水溶液,阳极和阴极,绝缘体和传入高恒流。暴露于对其寿命有直接影响的不利内部和外部因素。它们的劣化可能是不正确的极性,幅度不足,它们的结构,张力应力,热冲击,腐蚀等,以及它们的维护和更换可能是耗时的,昂贵,困难和环境不安全。职业健康危害和通过维护和去除细胞的危险也应考虑到。使用耐化学耐力加固来改变电池的设计和制造方法,并增加拉伸和机械强度将延迟维护很长一段时间。这可以通过双壳体系统实现,该双壳系统包括全长复合钢筋,用玻璃纤维拉挤杆和钢筋,玻璃纤维结构层和特殊树脂基质增强的聚合物混凝土。这将提供防止热冲击,腐蚀,泄漏,裂缝的保护。该电池的设计包括一个提升系统,该提升系统将能够快速且容易地安装,而无需移动大量电池,因为它足够坚固,以便独立并且不必粘合到相邻的细胞。同样,电池可以轻松锚定,因为它保持稳定。这尤其重要,因为空间仅限于电池和双梁顶部行驶起重机之间提升和操纵。提升系统还可以防止产品质量的电浸和损失,同时在工作场所提高效率和安全性。在生产停机时间方面的相当节省也是等式的一部分。

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