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Mutual separation of strontium, cerium, and uranium using pressure-driven flow in 100 nm-sized nanofluidic channels

机译:在100 nm大小的纳米流体通道中使用压力驱动流将锶,铈和铀相互分离

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We developed a novel nanofluidic control device, and demonstrated mutual separation of various metal ions in 300-3000 nm-sized nanofluidic channels. The ion concentration ratios of Sr(II), Ce(HI), and U(V1) in solutions before and after nanofluidic separation treatments were measured using ICP analysis. The results showed that the mass flow rates of Sr(II), Ce(Ill), and U(VI) ions in nanofluidic channels were quite different. The flow rates of Ce(III) and U(VI) ions in solutions through 3000 nm-sized nanochannnels were much smaller than those of Sr(II), and increased gradually with decreasing space sizes until 300 nm. The decontamination factors of Sr(II) and Ce(IIl) against U(VI) were determined as 10.6 and 12.5 in 3000 nm-sized channels and 1.3 and 1.7 in 300 nm-sized channels, respectively. The ion concentration ratios of Ce(III) and U(VI) in acid solutions were also examined in 300 nm-sized channels, and the mass flow rates of Ce(IH) and U(V1) were found to decrease and increase with increasing acid concentrations, respectively. Furthermore, the nanofluidic device made it possible to mutually separate U(IV) and U(VI) ions in acid solutions by flowing into nanofluidic channels.
机译:我们开发了一种新型的纳米流体控制装置,并演示了在300-3000 nm大小的纳米流体通道中各种金属离子的相互分离。使用ICP分析测量纳米流体分离处理前后溶液中Sr(II),Ce(HI)和U(V1)的离子浓度比。结果表明,纳米流体通道中Sr(II),Ce(III)和U(VI)离子的质量流率差异很大。 Ce(III)和U(VI)离子在溶液中流过3000 nm大小的纳米通道的流速比Sr(II)小得多,并且随着空间大小的减小而逐渐增大,直到300 nm。 Sr(II)和Ce(IIl)对U(VI)的去污因子在3000 nm大小的通道中分别确定为10.6和12.5,在300 nm大小的通道中分别为1.3和1.7。还在300 nm尺寸的通道中检查了酸溶液中Ce(III)和U(VI)的离子浓度比,发现Ce(IH)和U(V1)的质量流量随增加而减小和增大酸浓度分别。此外,纳米流体装置通过流入纳米流体通道,可以在酸溶液中相互分离U(IV)和U(VI)离子。

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