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Selective uptake properties of metal ions by hybrid microcapsules enclosed with TBP

机译:TBP包裹的混合微胶囊对金属离子的选择性吸收特性

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The granulation of TBP extractant is effective for the enhancement of uptake efficiency. The granulation was accomplished by microencap-sulating techniques using alginate gel polymers (alginate and alginic acid gel polymers; calcium alginate, barium alginate and nitric alginate (CaALG, BaALG and HALG)). The characterization of hybrid microcapsules was examined by SEM/EPMA, and the uptake properties and the selectivity of various nuclides, Fe(III), Sr(II), Co(II), U(VI) and Pu(IV), were examined by batch methods. A relatively high uptake (%) of Fe(III), Sr(II) and Co(II) above 80% was obtained in the presence of 10~(-3) M HNO_3, and the uptake equilibrium was attained within 5 h. The uptake rate of U(VI) and Pu(IV) attained equilibrium within 1 h and 3 h, respectively. At higher HNO_3 concentration ranging from 10~(-3) M to 5 M, the uptake (%) of Fe(III), Sr(II) and Co(II) was considerably lowered. In contrast, the uptake (%) of U(VI) and Pu(IV) about 60% was obtained even in the presence of 5 M HNO_3. The uptake of U(VI) for MCs (TBP-CaALG) was governed by the extraction with TBP micro droplets and ion-exchange reaction in the CaALG matrices. Energy dispersive spectra (EDS) showed that U(VI) ions were incorporated into both phases of TBP and CaALG in microcapsules.
机译:TBP萃取剂的颗粒化对于提高吸收效率是有效的。通过使用藻酸盐凝胶聚合物(藻酸盐和藻酸凝胶聚合物;藻酸钙,藻酸钡和藻酸硝酸盐(CaALG,BaALG和HALG))的微囊化造粒技术完成制粒。通过SEM / EPMA检查了杂化微胶囊的特性,并检查了各种核素Fe(III),Sr(II),Co(II),U(VI)和Pu(IV)的吸收特性和选择性分批方式。在10〜(-3)M HNO_3存在下,Fe(III),Sr(II)和Co(II)的吸收率较高(%)大于80%,并在5 h内达到吸收平衡。 U(VI)和Pu(IV)的吸收速率分别在1小时和3小时内达到平衡。在HNO_3浓度范围从10〜(-3)M到5 M时,Fe(III),Sr(II)和Co(II)的吸收率(%)大大降低。相反,即使在5 M HNO_3存在的情况下,也能获得约60%的U(VI)和Pu(IV)吸收(%)。 MCs(TBP-CaALG)对U(VI)的吸收受TBP微滴萃取和CaALG基质中的离子交换反应控制。能量色散谱(EDS)表明,U(VI)离子被掺入微胶囊中的TBP和CaALG的两个相中。

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