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首页> 外文期刊>Solvent Extraction and Ion Exchange >Modeling of the Extraction of Nitric Acid and Neodymium Nitrate from Aqueous Solutions over a Wide Range of Activities by CMPO
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Modeling of the Extraction of Nitric Acid and Neodymium Nitrate from Aqueous Solutions over a Wide Range of Activities by CMPO

机译:CMPO在多种活性下从水溶液中萃取硝酸和硝酸钕的模型

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摘要

A thermodynamic model that allows one to determine the number and the stoichiometry of the complexes formed between nitric acid,neodymium nitrate(Nd(NO_3)3),and octyl(phenyl)-N,N-diisobutylcarbamoylmethyl phosphine oxide(CMPO)diluted in nitrophenylhexyl ether(NPHE)also called l-(hexyloxy)-2-nitrobenzene,is presented in this work.The Mikulin-Sergievskii-Dannus' model was used to model the extraction at 25deg C of the HNO_3-H_2O-NPHE,HNO_3-H_2O-CMPO 0.2molkg~(-1)-NPHE,Nd(NO_3)_3-H_2O-CMPO 0.2molkg~(-1)-NPHE and Nd(NO_3)_3-HNO_3-H_2O-CMPO 0.2 mol kg~(-1)-NPHE systems.The stoichiometric mean activity coefficients of components in the binary aqueous phases were determined by interpolation from the experimental data published in the literature.For mixtures,they were calculated from experimental data using the Mikulin's equation,whereas the activity coefficients of the species in the organic phase were calculated from the Sergievskii-Dannus' equation.A satisfactory description of the distribution of neodymium nitrate,nitric acid,and water was then obtained over a wide range of neodymium and nitric acid concentrations in the aqueous phase by taking into account the formation of the following complexes:(HNO_3)(NPHE),(HNO_3)(H_2O)(NPHE),(HNO_3)(H_2O)(CMPO)_2,(HNO_3)(CMPO),(HNO_3)_2(CMPO),(HNO_3)_3(CMPO),(Nd(NO_3)_3)(CMPO)_3(1:3),(Nd(NO_3)_3)(CMPO)_2(1:2),(Nd(NO_3)_3)(CMPO)(1:1),(Nd(NO_3)_3)(HNO_3)(CMPO)_3(1:1:3),(Nd(NO_3)_3)(HNO_3)(CMPO)_2(1:1:2)and(Nd(NO_3)_3KHNO_3)(CMPO)(1:1:1).
机译:一个热力学模型,可以确定硝酸,硝酸钕(Nd(NO_3)3)和辛基(苯基)-N,N-N,N-二异丁基氨基甲酰基甲基氧化膦(CMPO)在硝基苯基己基中稀释后形成的配合物的数量和化学计量本文介绍了醚(NPHE),也称为1-(己氧基)-2-硝基苯。使用米库林-谢尔盖夫斯基-丹努斯模型对HNO_3-H_2O-NPHE,HNO_3-H_2O在25°C的萃取进行建模-CMPO 0.2molkg〜(-1)-NPHE,Nd(NO_3)_3-H_2O-CMPO 0.2molkg〜(-1)-NPHE和Nd(NO_3)_3-HNO_3-H_2O-CMPO 0.2mol kg〜(-1) -NPHE系统。根据文献中公布的实验数据通过插值法确定二元水相中各成分的化学计量平均活度系数。对于混合物,使用Mikulin方程从实验数据中计算出混合物的活度系数根据Sergievskii-Dannus方程计算有机相中的有机碳。对该分布的满意描述然后通过考虑以下配合物的形成,在水相中的宽范围的钕和硝酸浓度下获得硝酸钕,硝酸和水的合成:(HNO_3)(NPHE),(HNO_3)(H_2O )(NPHE),(HNO_3)(H_2O)(CMPO)_2,(HNO_3)(CMPO),(HNO_3)_2(CMPO),(HNO_3)_3(CMPO),(Nd(NO_3)_3)(CMPO)_3 (1:3),(Nd(NO_3)_3)(CMPO)_2(1:2),(Nd(NO_3)_3)(CMPO)(1:1),(Nd(NO_3)_3)(HNO_3)( CMPO)_3(1:1:3),(Nd(NO_3)_3)(HNO_3)(CMPO)_2(1:1:2)和(Nd(NO_3)_3KHNO_3)(CMPO)(1:1:1) 。

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