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作 者:王兴权[1,2,3] 贾永忠 姚颖[1,2] 肖江 王苏[1,2,3] 景燕 WANG Xing-quan;JIA Yong-zhong;YAO Ying;XIAO Jiang;WANG Su;JING Yan(Key Laboratory of Comprehensive and Highly Efficient Utilization of Salt Lake Resources,Qinghai Institute of Salt Lakes,Chinese Academy of Sciences,Xining,810008,China;Qinghai Engineering and Technology Research Center of Salt Lake Resources Development,Xining,810008,China;University of Chinese Academy of Sciences,Beijing,100049,China)
机构地区:[1]中国科学院青海盐湖研究所,中国科学院盐湖资源综合高效利用重点实验室,青海西宁810008 [2]青海省盐湖资源开发工程技术研究中心,青海西宁810008 [3]中国科学院大学,北京100049
出 处:《盐湖研究》2019年第4期70-76,共7页Journal of Salt Lake Research
基 金:国家自然科学盐湖专项基金(U1407117)
摘 要:锂的两种天然同位素(~6Li和~7Li)在能源、环境和国防安全等领域具有重要应用价值。以氯化锂溶液为原料,选用苯并15-冠-5和咪唑类离子液体体系对其进行了模拟逆流萃取实验,考察了多级逆流萃取过程中锂的萃取率和锂同位素分离系数的变化规律。同时,对锂同位素富集浓度和富集行为进了研究探讨。结果表明,经10级逆流萃取后,锂的萃取率和同位素分离系数有了明显提高,~6Li富集在有机相,丰度提高了0.299 6%。The two natural isotopes of lithium, ~6Li and^7Li, have important application value in energy, environment, national defense security and so on. In this paper, a simulated reverse counter-current extraction experiment was carried out, in which lithium chloride solution was used as raw material, and benzo-15-crown-5 and ionic liquids were used for extracting lithium ions from the solution. The experiment investigated the change rules of extraction efficiency for lithium ions and separation coefficient of lithium isotopes during the process of multi-stage countercurrent extraction,Moreover, we discussed about enrichment concentration and behavior of lithium isotope.The results showed that the extraction efficiency of lithium ions and separation coefficient of lithium isotopes are obviously improved.~6Li is enriched in the organic phase and its enrichment rate increases by 0.299 6%.
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