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Mechanism of Water Infiltration and Defiltration through ZSM-5 Zeolite: Heating and Sodium Chloride Concentration Effect

机译:ZSM-5沸石对水的渗透和反渗透机理:加热和氯化钠浓缩效应

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Hydrophobic nanoporous material and wetting liquid together comprise a system with promising energy related applications. The mechanism of the interaction between liquid and solid phase is not fully explored. In this paper, based on the quasistatic compression experiments on investigating the mechanical behavior of ZSM-5 zeolite/NaCl solution system, the effects of two key parameters, that is, the pretreatment temperature of ZSM-5 zeolite and NaCl concentration, are parametrically and quantitatively investigated based on Laplace-Washburn equation. Results show that both pretreatment temperature and NaCl concentration raise the infiltration pressure and NaCl can also promote defiltration. The advancing contact and receding contact angle of zeolite-NaCl-air system increase with both pretreatment temperature and NaCl concentration, and the contact angle hysteresis decreases with NaCl concentration. Results may provide fundamental explanation to the nanoconfined liquid behavior and liquid-solid interaction, thus, to smartly control the mechanical properties of the liquid spring and bumpers for energy dissipation function.
机译:疏水性纳米多孔材料和润湿液共同构成了一种具有前途的能源相关应用系统。液相和固相之间相互作用的机理尚未完全探讨。本文在通过准静态压缩实验研究ZSM-5沸石/ NaCl溶液体系的力学行为的基础上,对ZSM-5沸石的预处理温度和NaCl浓度这两个关键参数的影响进行了参数化和基于Laplace-Washburn方程进行定量研究。结果表明,预处理温度和NaCl浓度均增加了入渗压力,NaCl也可以促进脱渗。沸石-NaCl-空气系统的前进接触角和后退接触角均随预处理温度和NaCl浓度的增加而增加,接触角滞后随NaCl浓度的增加而减小。结果可能为纳米约束的液体行为和液-固相互作用提供基础解释,从而智能地控制液体弹簧和保险杠的机械性能以实现能量耗散功能。

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