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Influence Factors Analysis on Scavenging of Chlorine Impurity from Crude Titanium Sponge

机译:粗产钛海绵清除氯杂质的影响因素分析

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Titanium is exceptional value to industry, military and consumer applications due to the attractive combination of properties exhibited by metallic titanium and its alloys. The Kroll reduction reaction is a complex heterogeneous exothermic reaction with the possibility of the formation of TiCl_2 and TiCl_3 as reaction intermediates. Chlorine impurity has been a significant technical challenge in titanium production ever since the inception of the Kroll processes themselves. In this investigation, an attempt was made to check the influence factors of titanium sponge structure, raw materials, times of distillation and vacuum distillation process parameters on chorine impurity scavenging. The results indicate that the decrease of Ti sponge porosity increased the difficulty of chloride impurities removing. Chlorine content increased rapidly from 0.012 to 0.121% when the system pressure grew from 0.1 to 12 Pa in the vacuum distillation process. The chlorine content in titanium sponge was also increased with the increase of NaCl, MgCl_2 and CaCl_2 impurities in Mg reductant.
机译:由于金属钛及其合金所展示的性质的有吸引力组合,钛是行业,军事和消费者应用的特殊价值。 Kroll还原反应是复杂的非均相放热反应,其可能形成TiCl_2和TiCl_3作为反应中间体。自克罗尔工艺自身的成立以来,氯杂质在钛生产中是一个重要的技术挑战。在这项调查中,试图检查钛海绵结构,原料,蒸馏和真空蒸馏工艺参数的影响因素,对浓缩植物杂质清除。结果表明,Ti海绵孔隙的降低增加了去除氯化物杂质的难度。当系统压力在真空蒸馏过程中,当系统压力从0.1至12Pa增长时,氯含量迅速增加到0.121%。随着Mg还原剂中的NaCl,MgCl_2和CaCl_2杂质的增加,钛海绵中的氯含量也增加。

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