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Extraction of Lithium from Salt Lake Brine using N523-TBP Mixture System 被引量:2
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作者 SHI Dong LI Li-juan +11 位作者 LI Jin-feng JI Lian-min SONG Fu-gen PENG Xiao-wu ZHANG Li-cheng ZHANG Yu-ze LI Hui-fang SONG Xue-xue NIE Feng zeng zhong-min LIU Zhi-qi GUO Fan 《盐湖研究》 CSCD 2019年第2期95-110,共16页
In this work, problems encountered by tri-butyl phosphate (TBP) in the industrialization of lithium extraction from salt lake brine were discussed in detail. The behavior of N, N-bi-(2-ethylhexyl) acetamide (N523) dur... In this work, problems encountered by tri-butyl phosphate (TBP) in the industrialization of lithium extraction from salt lake brine were discussed in detail. The behavior of N, N-bi-(2-ethylhexyl) acetamide (N523) during lithium extraction was investigated, and its disadvantages were analyzed in the view of practical application. An N523-TBP mixture extraction system was proposed to alleviate or avoid the defects that N523 and TBP met when they were used separately. The optimal composition of this mixture extraction system was determined to be 20%N523-30%TBP-50% kerosene. The effects of brine acidity, Fe/Li molarity ratio, phase ratio and chloride ion concentration on lithium extraction efficiency were discussed. The operation conditions in single-stage extraction were optimized as brine acidity=0.05 mol/L, Fe/Li molarity ratio=1.3, and phase ratio=2. The high concentration of chloride ions in brine was beneficial for the extraction of lithium. The structure of the extracted complex was proposed as (LiFeCl 4 · n N523 · m TBP)·(2- n )N523 ·(2- m )TBP (m+n=2) by chemical analysis and slope-fitting methods. The extraction thermodynamic functions were calculated preliminarily, and the results suggested that the extraction process was an exothermic (ΔH <0) and spontaneous (ΔG <0) reaction, and the degree of disorder increased (ΔS >0) during the extraction process. This work will give some guidance to the lithium industry of Qinghai in both the fundamental theory and practical application. 展开更多
关键词 LITHIUM SOLVENT EXTRACTION TBP N523 THIRD phase Structure THERMODYNAMIC
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纳米及微米级六角片状氢氧化镁的制备 被引量:5
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作者 宋雪雪 李丽娟 +8 位作者 姬连敏 刘志启 聂锋 曾忠民 宋富根 时东 彭小五 张利诚 李慧芳 《盐湖研究》 CSCD 2018年第2期66-74,80,共10页
以氯化钠为底料,水氯镁石和氢氧化钠为原料,不添加任何添加剂,采用双柱沉淀—水热法制备粒度分布均匀、分散性良好的氢氧化镁。研究了进料速度、2N_(Mg)/N_(Na)、物料浓度、水热温度、水热时间等因素对氢氧化镁粒径、形貌、过滤性能的... 以氯化钠为底料,水氯镁石和氢氧化钠为原料,不添加任何添加剂,采用双柱沉淀—水热法制备粒度分布均匀、分散性良好的氢氧化镁。研究了进料速度、2N_(Mg)/N_(Na)、物料浓度、水热温度、水热时间等因素对氢氧化镁粒径、形貌、过滤性能的影响。通过粒度分析仪、X射线衍射仪、低真空扫描电子显微镜对产品的粒度分布、结构和形貌进行了表征。结果表明,本研究得到的样品分散性好,粒度分布均匀,形貌为规则的六角片状,粒径为400~600 nm的纳米级氢氧化镁或者1~2μm的微米级氢氧化镁。 展开更多
关键词 水热改性 纳米氢氧化镁 六角片状
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