Solvent extraction in the process industries

Solvent extraction in the process industries
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过程工业中的溶剂萃取

DOI:
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发表时间:
1993
期刊:
影响因子:
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通讯作者:
M. Slater
M. Slater
中科院分区:
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文献类型:
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作者:
D. H. Logsdail;M. Slater

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第一卷:1.联系设备1.1.使用Kuhni柱进行芳烃抽提,这是一种需要极高设计灵活性的应用。2.流程。2.1.氨系统中镍和钴的分离和回收.工艺开发。3.稀土。3.1.中国在稀土溶剂萃取方面的一些进展。4.流体力学与传质。4.1.脉冲和搅拌液-液萃取柱中粘度对液滴传输和破碎的影响。5.金属(试剂及改性剂)。5.1.液-液萃取与分子模拟。卷2:6.超临界流体萃取。6.1.使用胺夹带剂的超临界流体萃取。7.无机材料。7.1.用稳态模拟开发无机化学工业的液-液萃取过程。8.液膜。8.1.支撑液膜分离金属:膜特性的影响。9.生物科技。9.1.整个提取过程中的界面传质和分配研究。10.有机化学品。10.1.以苯酚、呋喃甲醛和N-甲基-2-吡咯烷酮为溶剂进行润滑油抽提的对比研究。11.控制和建模。11.1.液-液萃取塔的控制。第3卷:12.金属2(金属提取)。12.1.用有机磷试剂从铜精炼电解液中萃取砷、锑、铋。13.核1.13.1.用于回收辐照核燃料的溶剂提取工艺。14.环境保护。14.1.阿玛尔:金属废料回收的概念。15.基本面。15.1。湿法冶金溶剂萃取体系中的界面现象。16.核2.16.1.测定了Tc、Np[IV]和Np[Vi]在含U、Pu的硝酸溶液和30%TBP/正十二烷之间的分配系数。部件内容。
Volume 1: 1. Contacting Equipment 1.1. Aromatics extraction with the Kuhni column, an application requiring an extreme design flexibility. 2. Processes. 2.1. Separation and recovery of nickel and cobalt in ammoniacal systems - process development. 3. Rare Earths. 3.1. Some progresses in solvent extraction of rare earth in China. 4. Hydrodynamics and Mass Transfer. 4.1. The effect of viscosity on drop transport and breakup in pulsed and stirred liquid-liquid extraction columns. 5. Metals (Reagents and Modifiers). 5.1. Liquid-liquid extraction and molecular modelling. Volume 2: 6. Supercritical Fluid Extraction. 6.1. Supercritical fluid extraction using amine-entrainers. 7. Inorganic Materials. 7.1. The development of liquid-liquid extraction processes for the inorganic chemical industry using steady-state simulation. 8. Liquid Membranes. 8.1. Metal separation by supported liquid membranes: effect of the membrane characteristics. 9. Biotechnology. 9.1. Interfacial mass transfer and partition studies during whole broth extraction. 10. Organic Chemicals. 10.1. Comparative studies with phenol, furfural and N-methyl-2-pyrrolidone as solvents for lube oils extraction. 11. Control and Modelling. 11.1. Control of liquid-liquid extraction columns. Volume 3: 12. Metals 2 (Metals Extraction). 12.1. The solvent extraction of As, Sb and Bi from copper refining electrolytes using organophosphorus reagents. 13. Nuclear 1. 13.1. Solvent extraction processes used for the recycling of irradiated nuclear fuel. 14. Environmental. 14.1. AmMAR: concept for metal waste recovery. 15. Fundamentals. 15.1. Interfacial phenomena in hydrometallurgical solvent extraction systems. 16. Nuclear 2. 16.1. Distribution coefficient measurements of Tc, Np[IV] and Np[Vi] between nitric acid solutions containing U and Pu and 30per cent TBP/n-dodecane. Part contents.