首页> 外文期刊>Radiochemistry >Extraction of Uranium, Thorium, and Certain Lanthanides from Nitric Acid Medium with a Series of Substituted Glutaramides as Novel Extractants
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Extraction of Uranium, Thorium, and Certain Lanthanides from Nitric Acid Medium with a Series of Substituted Glutaramides as Novel Extractants

机译:用一系列取代的戊二胺作为新型萃取剂,从硝酸培养基中提取铀,钍和某些镧系元素

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A series of novel structurally related glutaramides (GAs) were synthesized and applied to the extraction and separation of selected actinides and lanthanides from nitric acid medium. The influence of the nature of the alkyl chain on the distribution ratio of U(VI) and Th(IV) was examined. N,N '-Dimethyl-N, N '-dioctylglutaramide (DMDOGA) and N, N '-dihexyl-N, N '-dioctylglutaramide (DHDOGA) were chosen and applied to the selective extraction and separation of U(VI), Th(IV), and selected lanthanides Ln(III) [Nd(III), Eu(III), Gd(III), Sm(III), and Dy(III)]. The distribution ratios of U(VI) and Th(IV) were determined in relation to the diluent type, shaking time, nitric acid concentration, salting-out agents, concentration of substituted glutaramide, and temperature. The extraction of lanthanides is negligible in the entire studied range of HNO3 concentrations (0.1-7 M). With an increase in the HNO3 concentration, the extraction of U(VI) increased up to 5 M HNO3 and then decreased on further increase in the acidity, whereas the extraction of Th(IV) slowly increased with the HNO3 concentration in the entire range studied. The stoichiometry of the U(VI) and Th(IV) extractable species was determined to be UO2(NO3)(2)center dot 2GA and Th(NO3)(4)center dot GA, respectively. The IR spectra of the extracted species were recorded. Both DMDOGA and DHDOGA are more selective to U(VI) compared to Th(IV) in HNO3 solutions. Good separation of U(VI) from Th(IV) can be achieved at 0.1-0.5 M HNO3. The back-extraction of U(VI) and Th(IV) from the organic phase was also studied.
机译:合成了一系列新的结构相关的谷氨酸(气体)并应用于从硝酸培养基中萃取和分离选定的阳光苷和镧系元素。检查烷基链的性质对U(VI)和Th(IV)的分布比的影响。 N,N'-dimethyl-N,N'-二辛基戊酰胺(Dmdoga)和N,N'-Dihexyl-N,N'-二辛基戊二胺(Dhdoga),并应用于U(VI),TH的选择性提取和分离(iv)和选定的镧系元素Ln(III)[Nd(III),Eu(III),Gd(III),SM(III)和Dy(III)]。 U(VI)和Th(IV)的分布比与稀释剂型,摇动时间,硝酸浓度,盐析试剂,取代的戊二酸浓度和温度有关。在整个研究的HNO 3浓度范围内镧系元素的提取可忽略不计(0.1-7μm)。随着HNO3浓度的增加,U(VI)的提取增加至5MHNO 3,然后在酸度的进一步增加下降,而在研究的整个范围内的HNO3浓度缓慢增加TH(IV)的提取。将U(VI)和Th(IV)可提取物种的化学计量分别测定为UO 2(NO 3)(2)中心点2GA和TH(NO 3)(4)中心点GA。记录提取物种的IR光谱。与HNO3解决方案中的TH(IV)相比,DMDOGA和DHDOGA都是对U(VI)的选择性。从TH(IV)的良好分离(IV)可以在0.1-0.5M HNO 3下实现。还研究了来自有机相的U(VI)和Th(IV)的后萃取。

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