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Nanofluidic behavior on potassium chloride solution in zeolite Y

机译:Y型沸石在氯化钾溶液中的纳米流体行为

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Nanofluidic behavior has been an active area of research for the past decade. In addition to modifying nanopore size and surface properties, another important way to adjust system performance is to control the liquid composition. In the current study, we investigate the influence of electrolyte concentration on the infiltration behavior, as well as its dependence on temperature. A hydrophilic zeolite Y can be soaked in pure water, while with the addition of an electrolyte it can't be soaked spontaneously. It is noticed that the effective solid-liquid interfacial tension in nanopores is highly sensitive to the electrolyte concentration, which may be related to the unique confinement environment in nanoporous material. As a result, with the electrolyte concentration varying, the effective interfacial tension changes rapidly. This phenomenon can be attributed to the amplification effect of nanopore surfaces on the solid-liquid interaction. It provides a scientific basis for developing smart liquids for various temperature and pressure ranges.
机译:在过去的十年中,纳米流体行为一直是研究的活跃领域。除了改变纳米孔的大小和表面性质,调节系统性能的另一种重要方法是控制液体组成。在当前的研究中,我们研究了电解质浓度对渗透行为及其对温度的依赖性的影响。亲水性沸石Y可以浸泡在纯水中,而添加电解质则不能自发地浸泡。注意到纳米孔中的有效固液界面张力对电解质浓度高度敏感,这可能与纳米孔材料中独特的封闭环境有关。结果,随着电解质浓度的变化,有效界面张力迅速变化。这种现象可归因于纳米孔表面对固液相互作用的放大作用。它为开发适用于各种温度和压力范围的智能液体提供了科学依据。

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