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Nd_2O_3-NdF_3-LiF熔盐体系中电导率及钕溶解度的测定 被引量:27
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作者 吴其山 《稀有金属与硬质合金》 CAS CSCD 2006年第1期52-54,共3页
研究了Nd2O3-NdF3-LiF熔盐体系中电导率及钕的溶解度,并根据实验数据拟合了回归方程,分析了温度、LiF浓度、Nd2O3浓度对两种物理性质的影响。结果表明,升高温度,提高LiF浓度以及降低Nd2O3浓度可以提高熔盐体系的电导率;而降低温度,降低... 研究了Nd2O3-NdF3-LiF熔盐体系中电导率及钕的溶解度,并根据实验数据拟合了回归方程,分析了温度、LiF浓度、Nd2O3浓度对两种物理性质的影响。结果表明,升高温度,提高LiF浓度以及降低Nd2O3浓度可以提高熔盐体系的电导率;而降低温度,降低LiF浓度以及提高Nd2O3浓度可以减少钕在熔盐中的溶解度。所得研究结果可为电解氟盐法生产钕选择合理的电解质成分提供依据。 展开更多
关键词 稀土氟盐 熔盐体系 回归方程 电导率 钕溶解度
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Density of Na3AIF6-AIF3-LiF-MgF2-Al2O3-Sm2O3 molten salt melt for Al-Sm alloy 被引量:1
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作者 Yunfen Jiao Xu Wang +4 位作者 Chunfa Liao Jia Su Hao Tang Boqing Cai Qiangchao Sun 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第2期190-196,共7页
Samarium(Sm) has been widely used in making aluminum(Al)-Sm magnet alloy materials. The research team for this study developed a molten salt electrolyte system which directly produces AI-Sm alloy to replace the en... Samarium(Sm) has been widely used in making aluminum(Al)-Sm magnet alloy materials. The research team for this study developed a molten salt electrolyte system which directly produces AI-Sm alloy to replace the energy intensive conventional distillation technology. In this study, molten melt density was measured and operation conditions were optimized to separate AI-Sm alloy product from the fluoride molten melt electrolysis media based on density differences, Archimedes' principle was applied to measure density for the basic molten fluoride system(BMFS: Na_3 AlF_6-AlF_3-LiF-MgF_2)electrolysis media in the temperature range from 905 to 1055 ℃.The impact of temperature(t) and the Al_2O_3 and Sm_2O_3 addition ratio(w_((Al2O3)),w_((Sm2O3)) in the basic fluoride system on molten melt density was examined. The fluoride molten melt density relationship was determined to be:ρ=3.11701-0.00802 w_((Al2O3))+0.027825 w_((Sm2O3))-0.00117 t. The test results showed that molten density decreases with increase in temperature and Al_2O_3 addition ratio, and increases with the addition of Sm_2O_3, and/or Al_2O_3+Sm_2O_3. The separation of Al-Sm(density 2.3 g/cm^3) product melt from the BMFS melt is achieved by controlling the BMFS density to less than 2.0 g/cm3. It is concluded that the optimal operation conditions to control the BMFS molten salt density to less than 2.0 g/cm^3 are:maintain addition of Al_2O_3+Sm_2 O_3(w_((Al2O3))+w_((Sm2O3))〈9% of Na_3AlF_6,Al_2O_3/Sm_2O_3 ratio(w_((Al2O3)):w_((Sm2O3)))〉 7:3, and temperature between 965 and 995 ℃. 展开更多
关键词 Sm2O3 Molten salt Density regression analysis Al-Sm master alloy rare earths
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