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等離子區(qū)域熔煉提純金屬Y過程中的雜質(zhì)遷移規(guī)律
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1.有研稀土高技術有限公司,河北 廊坊 065201;2.有研稀土新材料股份有限公司,北京 100088;3.稀土國家工程研究中心,北京 100088;4.北京科技大學 冶金與生態(tài)工程學院,北京 100083

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國家重點研發(fā)計劃,工信部產(chǎn)業(yè)升級項目-兩機專項


Migration Laws of Impurities in Purification Process of Yttrium Metal by Plasma Zone Melting
Author:
Affiliation:

1.GRIREM Hi-Tech Co., Ltd, Langfang 065201, China;2.GRIREM Advanced Materials Co., Ltd, Beijing 100088, China;3.National Engineering Research Center for Rare Earth, Beijing 100088, China;4.School of Metallurgy and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China

Fund Project:

National Key Research and Development Program of China (2022YFB3504401); National Science and Technology Major Project of China (J2019-VI-0023-0140)

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    摘要:

    利用等離子體區(qū)域熔煉提純金屬釔,獲得了區(qū)熔提純過程中Al、Si、Fe、Ni、Cu和Mo等雜質(zhì)的遷移規(guī)律。計算結果表明,金屬釔中Al、Si、Fe、Ni、Cu和Mo等常見雜質(zhì)的平衡分配系數(shù)分別是0.2173、0.2201、0.5065、0.1586、0.1742和0.8576。由于上述雜質(zhì)平衡分配系數(shù)小于1,雜質(zhì)在液相中的溶解度大于固相溶解度,所以從理論上可判斷出Al、Si、Fe、Ni、Cu和Mo等雜質(zhì)將隨著熔區(qū)移動富集在金屬釔錠的尾端,也就是最后凝固區(qū)。實驗結果證明了該理論預判的準確性。此外,探究了區(qū)熔次數(shù)與雜質(zhì)遷移的內(nèi)在聯(lián)系,結果表明:隨著區(qū)熔次數(shù)由5次增加至10次,雜質(zhì)在金屬釔錠尾端富集程度增加,即去除率升高。10次區(qū)熔后,Al、Si、Fe、Ni、Cu和Mo等雜質(zhì)的去除率分別為45.71%、61.54%、33.98%、64.15%、52.14%和46.28%。由于上述雜質(zhì)飽和蒸氣壓與金屬釔接近,所以很難通過常規(guī)方法予以去除。等離子體區(qū)域熔煉提純金屬釔的研究為制備高純釔提供了一種新方向。

    Abstract:

    Metal Y was purified by plasma zone melting, and the migration laws of Al, Si, Fe, Ni, Cu, and Mo impurities during the zone melting purification process were obtained. Calculation results show that the equilibrium distribution coefficients of the Al, Si, Fe, Ni, Cu, and Mo impurities in metal Y are 0.2173, 0.2201, 0.5065, 0.1586, 0.1742, and 0.8576, respectively. Because all equilibrium distribution coefficients are less than 1, the solubility of impurities in the liquid phase is greater than that in the solid phase. Therefore, theoretically, with the movement of molten zone, the Al, Si, Fe, Ni, Cu, and Mo impurities will be concentrated in the tail side of Y metal ingot, namely last-to-freeze zone. Experiment results demonstrate the correctness of the theoretical calculation. Besides, the internal relationship between the zone melting times and the impurity migration was investigated. Results show that with the increase in the zone melting time from 5 to 10, the concentration degree of impurities at the tail side of Y metal ingot is increased, i.e., the removal ratio is increased. After 10 times of zone melting, the removal ratios of Al, Si, Fe, Ni, Cu, and Mo impurities are 45.71%, 61.54%, 33.98%, 64.15%, 52.14%, and 46.28%, respectively. Because the saturated vapor pressure of the abovementioned impurities is similar to that of metal Y, impurities are difficult to be removed by the common methods. The investigation of plasma zone melting proposes a new research direction for the preparation of high purity Y.

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徐明磊,盧文禮,張小偉,陳德宏,李金穎,余創(chuàng),楊文晟,王志強.等離子區(qū)域熔煉提純金屬Y過程中的雜質(zhì)遷移規(guī)律[J].稀有金屬材料與工程,2024,53(6):1543~1548.[Xu Minglei, Lu Wenli, Zhang Xiaowei, Chen Dehong, Li Jinying, Yu Chuang, Yang Wensheng, Wang Zhiqiang. Migration Laws of Impurities in Purification Process of Yttrium Metal by Plasma Zone Melting[J]. Rare Metal Materials and Engineering,2024,53(6):1543~1548.]
DOI:10.12442/j. issn.1002-185X.20230556

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  • 收稿日期:2023-09-05
  • 最后修改日期:2024-01-23
  • 錄用日期:2024-01-31
  • 在線發(fā)布日期: 2024-06-20
  • 出版日期: 2024-06-17