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(Z059)Direct electrochemical reduction of titanium-bearing compounds to titanium-silicon alloys in molten calcium chloride

机译:(Z059)将含硅化合物的直接电化学还原到氯化钙中的钛 - 硅合金

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Titanium-silicon alloys have been electrochemically extracted from the multi-component titanium compounds in molten calcium chloride electrolyte. Sintered pressed pellets of titanium-bearing compounds served as the cathode, and the electrochemical experiments were systematically carried out at 900 °C, 3.1 V and 1000 °C, 3.8 V using a graphite-based anode and an improved inert-oxygen-ion-conducting membrane-based anode, respectively. The mineral composition and morphology of the products were examined. The current feature and the reaction process are discussed, and the mechanisms involved in the electrochemical reduction of titanium-bearing compounds to titanium-silicon alloys are proposed. Comparison between the graphite- and membrane-based anode systems are also carried out, and the results show that the improved membrane-based anode electrolysis system exhibits higher current efficiency and reduction rate than the graphite-based anode electrolysis system. Interestingly, the other metallic impurities such as Ca, Mg and Al contained in the starting titanium compounds have been partly even completely removed during electro-deoxidation, and the removal mechanism is discussed in the paper too. The experimental results show that titanium-silicon alloy (Ti 5Si 3) can be directly extracted from titanium-bearing compounds using electro-deoxidation technology in molten CaCl 2. Electrolysis of ~1.5 g titanium compounds using the membrane-based anode system can be finished within 6 h, and the current efficiency reaches approximately 50%.
机译:已经从氯化钙电解质中的多组分钛化合物电化学萃取钛 - 硅合金。用作阴极的含钛化合物的烧结压制粒料,使用基于石墨的阳极和改进的惰性 - 氧离子,系统地在900℃,3.1V和1000℃下系统地进行电化学实验。分别进行膜基阳极。检查了产物的矿物成分和形态。讨论了目前的特征和反应过程,提出了载钛化合物对钛 - 硅合金的电化学还原的机制。还进行了石墨和膜的阳极系统之间的比较,结果表明,改进的膜基阳极电解系统表现出比石墨的阳极电解系统更高的电流效率和缩减率。有趣的是,在电脱氧期间,已经部分甚至完全除去在起始钛化合物中的其他金属杂质,如Ca,Mg和Al。在纸上也讨论了去除机制。实验结果表明,钛 - 硅合金(Ti 5Si 3)可以在熔融CaCl中的电脱氧技术直接从含钛化合物中提取2.使用膜基阳极系统的电解〜1.5g钛化合物在6小时内,电流效率达到约50%。

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