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Minimising oxygen contamination through a liquid copper-aided group IV metal production process

机译:通过液态铜辅助的第四族金属生产工艺将氧气污染降至最低

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摘要

This paper demonstrates for the first time the fabrication of Zr-Cu alloy ingots from a Hf- free ZrO2 precursor in a molten CaCl2 medium to recover nuclear-grade Zr. The reduction of ZrO2 in the presence of CaO was accelerated by the formation of Ca metal in the intermediate stage of the process. Tests conducted with various amounts of ZrO2 indicate that the ZrO2 was reduced to the metallic form at low potentials applied at the cathode, and the main part of the zirconium was converted to a CuZr alloy with a different composition. The maximum oxygen content values in the CuZr alloy and Zr samples upon using liquid Cu were less than 300 and 891 ppm, respectively. However, Al contamination was observed in the CuZr during the electroreduction process. In order to solve the Al contamination problem, the fabrication process of CuZr was performed using the metallothermic reduction process, and the produced CuZr was used for electrorefining. The CuZr alloy was further purified by a molten salt electrorefining process to recover pure nuclear-grade Zr in a LiF-Ba2ZrF8-based molten salt, the latter of which was fabricated from a waste pickling acid of a Zr clad tube. After the electrorefining process, the recovered Zr metal was fabricated into nuclear-grade Zr buttons through arc melting following a salt distillation process. The results suggest that the removal of oxygen from the reduction product is a key reason for the use of a liquid CaCu reduction agent.
机译:本文首次演示了在熔融的CaCl2介质中由无Hf的ZrO2前驱体制造Zr-Cu合金锭,以回收核级Zr。在该过程的中间阶段,通过金属钙的形成,促进了CaO存在下ZrO2的还原。用各种量的ZrO2进行的测试表明,ZrO2在施加在阴极上的低电势下被还原成金属形式,并且锆的主要部分转化为具有不同组成的CuZr合金。使用液态铜时,CuZr合金和Zr样品中的最大氧含量值分别小于300 ppm和891 ppm。但是,在电解还原过程中,在CuZr中观察到Al污染。为了解决Al污染问题,使用金属热还原工艺进行CuZr的制造工艺,并将所生产的CuZr用于电精炼。通过熔融盐电精炼工艺进一步纯化CuZr合金,以回收基于LiF-Ba2ZrF8的熔融盐中的纯核级Zr,后者由Zr包层管的废酸洗酸制成。在电精炼工艺之后,通过盐蒸馏工艺通过电弧熔化将回收的Zr金属制成核级Zr纽扣。结果表明,从还原产物中除去氧气是使用液态CaCu还原剂的关键原因。

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