Narita Hirokazu, Maeda Motoki, Tokoro Chiharu, Suzuki Tomoya, Tanaka Mikiya, Shiwaku Hideaki, Yaita Tsuyoshi
Global Zero Emission Research Center, National Institute of Advanced Industrial Science and Technology (AIST) 16-1 Onogawa Tsukuba Ibaraki 305-8569 Japan
School of Creative Science and Engineering, Waseda University 3-4-1 Okubo Shinjuku Tokyo 169-8555 Japan.
RSC Adv. 2023 Jun 6;13(25):17001-17007. doi: 10.1039/d3ra01341c. eCollection 2023 Jun 5.
Here, we investigated the mechanism underlying the extraction of Se(iv) and Se(vi) from aqueous HCl solutions by -2-ethylhexyl-bis(-di-2-ethylhexyl-ethylamide)amine (EHBAA). In addition to examining extraction behavior, we also elucidated structural properties of the dominant Se species in solution. Two types of aqueous HCl solutions were prepared by dissolving a Se oxide or a Se salt. X-ray absorption near edge structure analyses revealed that Se(vi) was reduced to Se(iv) in 8 M HCl. Using 0.5 M EHBAA, ∼50% of Se(vi) was extracted from 0.5 M HCl. In contrast, Se(iv) was hardly extracted from 0.5 to 5 M HCl; however, at molar concentrations above 5 M, the extraction efficiency of Se(iv) increased drastically, reaching ∼85%. Slope analyses for the distribution ratios of Se(iv) in 8 M HCl and Se(vi) in 0.5 M HCl showed that apparent stoichiometries of Se(iv) or Se(vi) to EHBAA were 1 : 1 and 1 : 2, respectively. Extended X-ray absorption fine structure measurements revealed that the inner-sphere of the Se(iv) and Se(vi) complexes extracted with EHBAA was [SeOCl] and [SeO], respectively. Together, these results indicate that Se(iv) is extracted from 8 M HCl with EHBAA a solvation-type reaction, whereas Se(vi) is extracted from 0.5 M HCl an anion-exchange-type reaction.
在此,我们研究了-2-乙基己基-双(-二-2-乙基己基-乙酰胺)胺(EHBAA)从盐酸水溶液中萃取Se(IV)和Se(VI)的潜在机制。除了研究萃取行为外,我们还阐明了溶液中主要硒物种的结构特性。通过溶解氧化硒或硒盐制备了两种类型的盐酸水溶液。X射线吸收近边结构分析表明,在8 M HCl中Se(VI)被还原为Se(IV)。使用0.5 M EHBAA,从0.5 M HCl中萃取了约50%的Se(VI)。相比之下,在0.5至(5) M HCl中几乎不萃取Se(IV);然而,在摩尔浓度高于(5) M时,Se(IV)的萃取效率急剧增加,达到约85%。对8 M HCl中Se(IV)和0.5 M HCl中Se(VI)的分配比进行斜率分析表明,Se(IV)或Se(VI)与EHBAA的表观化学计量比分别为1∶1和1∶2。扩展X射线吸收精细结构测量表明,用EHBAA萃取的Se(IV)和Se(VI)配合物的内界分别为[SeOCl]和[SeO]。这些结果共同表明,Se(IV)在8 M HCl中与EHBAA通过溶剂化型反应被萃取,而Se(VI)在0.5 M HCl中通过阴离子交换型反应被萃取。