Separation of Ti from Bi-Ti alloy by Solid-Liquid Separation at High Temperature and Vacuum Distillation

Kazuhiro Kumamoto, Kunitomo Yoshinobu, A. Kishimoto, K. Okamoto, Akiko Kuramitsu, T. Uda
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Abstract

A new Ti smelting process via . Bi–Ti alloy is proposed. This process comprises reduction of TiCl 4 to Bi–10 mol%Ti alloy by Bi–Mg alloy, precipitation of Ti-rich compound from the alloy, and vacuum distillation. In this study, we investigated the precipitation and distillation processes. In the precipitation process, the Bi–10 mol%Ti liquid alloy is cooled from 900 ℃ to 500 ℃ to precipitate Bi 9 Ti 8 in the liquid alloy. The Bi 9 Ti 8 is recovered by a two-step separation method: recovery of mixture of Bi 9 Ti 8 and Bi and further removal of Bi by centrifugal filtration. We demonstrated the recovery of mixture. As the results, Ti concentration in the mixture was 31 mol%, and the Ti yield was about 45 %. Because the remained liquid alloy after the recovery contains a large amount of Bi 9 Ti 8 , it is required to reuse the remained alloy in the precipitation process. Assuming the reuse of remained alloy, the material flow of the process was designed based on the experimental results. The centrifugal filtration of the mixture of Bi 9 Ti 8 and Bi was also carried out at 500 ℃ . By the centrifugal filtration at 50 G, alloys with a size of 1.5 mm were obtained, and the Ti concentration in the alloys was increased from 31 mol% to 40 mol%. Vacuum distillation of alloy powder and ingot was demonstrated. The distillation rate was enhanced when using the powder than when using alloy ingot as a starting material.
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高温固液分离真空蒸馏法从双钛合金中分离Ti
一种熔炼钛的新工艺。提出了双钛合金。该工艺包括用Bi-Mg合金将ticl4还原成bi - 10mol %的Ti合金,从合金中析出富Ti化合物,并进行真空蒸馏。在这项研究中,我们研究了沉淀和蒸馏过程。在析出过程中,将Bi - 10 mol%Ti液态合金从900℃冷却至500℃,析出Bi - 9 Ti - 8。采用两步分离法回收bi9ti8,即回收bi9ti8和Bi的混合物,再通过离心过滤去除Bi。我们演示了混合物的回收。结果表明,混合物中Ti的浓度为31 mol%, Ti的收率约为45%。由于回收后的剩余液态合金中含有大量的bi9ti - 8,因此需要在沉淀过程中对剩余合金进行再利用。以剩余合金的再利用为前提,根据实验结果设计了工艺流程。在500℃下对bi9ti8和Bi的混合物进行了离心过滤。经50 G离心过滤,得到尺寸为1.5 mm的合金,合金中Ti的浓度由31 mol%提高到40 mol%。介绍了合金粉末和铸锭的真空蒸馏过程。以粉末为原料比以合金锭为原料提高了精馏速度。
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