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首页> 外文期刊>Solvent Extraction and Ion Exchange >Effect of extractant structure on third phase formation in the extraction of uranium and nitric acid by N,N-dialkyl amides
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Effect of extractant structure on third phase formation in the extraction of uranium and nitric acid by N,N-dialkyl amides

机译:N,N-二烷基酰胺萃取铀和硝酸中萃取剂结构对第三相形成的影响

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摘要

The influence of the molecular structure of amides on the third phase formation in the extraction of uranium and nitric acid was investigated. Nine amides namely, dibutyl hexanamide (DBHA), diisobutyl hexanamide(DiBHA), dibutyl octanamide (DBOA), dihexyl hexanamide (DHHA), dibutyl dodecanamide (DBDA), diisooctyl butanamide (DiOBA), di n-octyl isobutanamide (DOiBA), di n-octyl butanamide (DOBA), and di n-octyl hexanamide (DOHA) were synthesized and used. The limiting organic concentration (LOC) of uranium (VI) for third phase formation was studied as a function of nitric acid concentration using 0.5 M solutions of these amides in dodecane. The LOC for extraction from neutral medium (with near zero free acidity) was also measured at four different temperatures. The LOC values were found to increase in general with an increase in the total number of carbon atoms in the amide from 14 to 22. The LOC values of DHHA (C. No.14), DiHHA (C. No.14), DHOA (C. No.16) were lower compared to that of DHHA (C. No.18), DHDA (C. No.20), DOHA (C. No.22), which have relatively longer carbon chain length. Further it was observed that introduction of branching at the nitrogen side increases the LOC value as compared to the straight chain analogue, as in the case of DiOHA and DiHHA. In the latter case, however, this effect is not very pronounced perhaps due to the smaller carbon chain length. Introduction of branching at the position alpha to the carbonyl group was found to sharply decrease the LOC value due to steric hindrance as can be seen in the case of DOHA and DOiHA. Further, by varying the carbon chain length on both acyl and nitrogen sides, keeping the total carbon number invariant, it was found that the LOC increases considerably on increasing the chain length on the acyl side. On the contrary, the LOC for nitric acid extraction was not influenced significantly by the structure of the amide. Nevertheless, the distribution ratio at the point of dissolution of the third phase was found to decrease with introduction of branching on either end of the amide and more so, if branching was introduced on the acyl end of the amide.
机译:研究了酰胺分子结构对铀和硝酸萃取中第三相形成的影响。九种酰胺,即二丁基己酰胺(DBHA),二异丁基己酰胺(DiBHA),二丁基己酰胺(DBOA),二己基己酰胺(DHHA),二丁基十二烷酰胺(DBDA),二异辛基丁酰胺(DiOBA),二正辛基异丁酰胺(DOiBA)合成并使用了正辛基丁酰胺(DOBA)和二正辛基己酰胺(DOHA)。使用0.5 M的这些酰胺在十二烷中的溶液,研究了第三相形成时铀(VI)的极限有机浓度(LOC)与硝酸浓度的关系。还从四个不同温度下测量了从中性介质(游离酸度接近于零)中提取的LOC。发现,随着酰胺中碳原子总数从14增加到22,LOC值通常会增加。DHHA(C. No.14),DiHHA(C. No.14),DHOA的LOC值(C.No.16)比具有相对较长碳链长度的DHHA(C.No.18),DHDA(C.No.20),DOHA(C.No.22)低。此外,与DiOHA和DiHHA的情况相比,观察到与直链类似物相比,在氮侧引入支链增加了LOC值。但是,在后一种情况下,这种影响可能不是很明显,可能是由于碳链长度较小。如在DOHA和DOiHA的情况中所见,由于空间位阻,发现在羰基的α位置引入支链会大大降低LOC值。此外,通过改变酰基和氮侧的碳链长度,保持总碳原子数不变,发现LOC随着酰基侧链长度的增加而显着增加。相反,用于硝酸萃取的LOC不受酰胺结构的影响。然而,发现在酰胺的任一末端引入支链时,第三相溶解点的分配比降低,并且如果在酰胺的酰基末端引入支链,则分布比进一步降低。

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