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Separation of Neodymium and Dysprosium by Molten Salt Electrolysis Using an Alloy Diaphragm

机译:用合金隔膜用熔盐电解分离钕和镝

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As a part of our ongoing study on a new rare-earth elements recycling process using molten salts and alloy diaphragms, selective permeation of Dy through an alloy diaphragm is investigated in LiCl-KCl eutectic melts containing NdCl_3 and DyCl_3 at 450 °C. In this process, the permeation of rare-earth elements is carried out via the following three steps: (a) cathodic reduction of rare-earth ions to form alloys on one side of the diaphragm, (b) diffusion of rare-earth atoms in the diaphragm, and (c) anodic oxidation of rare-earth atoms to ions on the other side of the diaphragm. A preliminary experiment reveals that Dy selectively permeates the diaphragm under an appropriate condition.
机译:作为我们对使用熔盐和合金隔膜的新的稀土元素回收过程的持续研究的一部分,在含有NdCl_3和Dycl_3的LiCl-Kcl共晶熔体中研究了通过合金隔膜的选择性渗透。450℃。在该方法中,通过以下三个步骤进行稀土元素的渗透:(a)稀土离子的阴极还原,以形成隔膜一侧的合金,(b)稀土原子的扩散隔膜,和(c)稀土原子的阳极氧化在隔膜的另一侧的离子。初步实验表明,Dy在适当的条件下选择性地渗透膜片。

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