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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Capillary Condensation of Binary and Ternary Mixtures of n-Pentane–Isopentane–CO2 in Nanopores: An Experimental Study on the Effects of Composition and Equilibrium
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Capillary Condensation of Binary and Ternary Mixtures of n-Pentane–Isopentane–CO2 in Nanopores: An Experimental Study on the Effects of Composition and Equilibrium

机译:纳米孔中的二元和三元混合物的二元和三元混合物的毛细管缩合 - 纳米孔中的2℃> 2 :组成和平衡效应的实验研究

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摘要

Confinement in nanopores can significantly impact the chemical and physical behavior of fluids. While some quantitative understanding is available for how pure fluids behave in nanopores, there is little such insight for mixtures. This study aims to shed light on how nanoporosity impacts the phase behavior and composition of confined mixtures through comparison of the effects of static and dynamic equilibrium on experimentally measured isotherms and chromatographic analysis of the experimental fluids. To this end, a novel gravimetric apparatus is introduced and validated. Unlike apparatuses that have been previously used to study the confinement-induced phase behavior of fluids, this apparatus employs a gravimetric technique capable of discerning phase transitions in a wide variety of nanoporous media under both static and dynamic conditions. The apparatus was successfully validated against data in the literature for pure carbon dioxide and n -pentane. Then, isotherms were generated for binary mixtures of carbon dioxide and n -pentane using static and flow-through methods. Finally, two ternary mixtures of carbon dioxide, n -pentane, and isopentane were measured using the static method. While the equilibrium time was found important for determination of confined phase transitions, flow rate in the dynamic method was not found to affect the confined phase behavior. For all measurements, the results indicate qualitative transferability of the bulk phase behavior to the confined fluid.
机译:纳米孔的限制可以显着影响流体的化学和物理行为。虽然一些定量理解适用于纯粹的流体在纳米孔中的表现,但对混合物几乎没有这样的洞察力。本研究旨在通过比较静态和动态均衡对实验测量等温线和实验液相色谱分析的影响,阐明纳米透射率如何影响狭窄混合物的相位行为和组成。为此,引入并验证了一种新型重量装置。与先前用于研究流体的限制诱导的相位行为的装置不同,该装置采用重量技术,其能够在静态和动态条件下在各种纳米多孔介质中辨别相变的阶段转变。该装置成功验证了针对纯二氧化碳和N-戊烷的文献中的数据验证。然后,使用静态和流通方法对二元混合物和N-戊烷的二元混合物产生等温。最后,使用静态法测量两种三元混合物,二氧化碳,N-戊烷和异戊烷。虽然发现均衡时间对于确定受限相转变的测定是重要的,但没有发现动态方法中的流速来影响受限的相位行为。对于所有测量,结果表明将批量相行为与限制性流体的定性可转移性表示。

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