首页> 外文期刊>Adsorption Science & Technology >Studies of the effect of Crosslinking in the Strongly Basic Anion Exchanger Dowex 1 and the HNO_3 Concentration Employed on the Separation of the Sm~(III)-Nd~(III) Pair in the Polar Organic Solvent-H_2O-HNO_3 System
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Studies of the effect of Crosslinking in the Strongly Basic Anion Exchanger Dowex 1 and the HNO_3 Concentration Employed on the Separation of the Sm~(III)-Nd~(III) Pair in the Polar Organic Solvent-H_2O-HNO_3 System

机译:极性有机溶剂-H_2O-HNO_3体系中强碱性阴离子交换剂Dowex 1的交联作用和HNO_3浓度对分离Sm〜(III)-Nd〜(III)对的影响的研究

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摘要

Because of their specific structure, rare earth elements are used for the modification or structural stabilization of many metallic or ceramic materials employed in modern technology and also in the metallic form, i.e. in alloys and compounds with unique properties. Industrial demand for rare earth metals has increased lately due to their new application possibilities, e.g. in supermagnets of the Nd-Fe-B type or in ceramic high-temperature superconductors. Equally, the application of rare earth elements in metallurgy, catalysis, ceramics, etc. remains of significant importance. The separation and purification of rare earth elements(III) which occur in groups with similar physicochemical properties involve extremely difficult and complex processes. Ion exchange is one method which enables such separation. This paper presents the results ofstudies of the influence of the extent of crosslinking in the anion exchanger Dowex 1 and the concentration of nitric acid on the separation of the Sm~(III)-Nd~(III) pair by frontal analysis in 90% v/v CH_3COCH_3-or the CH_3OH-10% v/v x M HNO_3 systems. The most effective results were obtained in the 90% v/v CH_3OH-10% v/v 7 M HNO_3 system employing the anion exchanger Dowex 1 * 4 allowing 0.11 kg samarium(III) to be purified on 1 dm~3 ion exchanger in the nitrate form and leading to a decrease in the micro-componet content to a value below 10~(-3)%.
机译:由于其特殊的结构,稀土元素用于现代技术中以及金属形式(即具有独特性能的合金和化合物)中使用的许多金属或陶瓷材料的改性或结构稳定化。由于稀土金属的新应用可能性,例如最近工业对稀土金属的需求增加了。在Nd-Fe-B型超磁体中或在陶瓷高温超导体中。同样,稀土元素在冶金,催化,陶瓷等领域的应用仍然非常重要。以相似的理化性质分组存在的稀土元素(III)的分离和纯化涉及极其困难和复杂的过程。离子交换是实现这种分离的一种方法。本文通过在90%v下进行正面分析,研究了阴离子交换剂Dowex 1中交联程度和硝酸浓度对Sm〜(III)-Nd〜(III)对分离的影响的研究结果。 / v CH_3COCH_3-或CH_3OH-10%v / vx M HNO_3系统。在使用阴离子交换剂Dowex 1 * 4的90%v / v CH_3OH-10%v / v 7 M HNO_3系统中获得最有效的结果,可在1 dm〜3离子交换剂中纯化0.11 kg((III)。硝酸盐形式,导致微componet含量降低到低于10〜(-3)%的值。

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