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Energetic Performance of Pure Silica Zeolites under High-Pressure Intrusion of LiCl Aqueous Solutions: An Overview

机译:LiCl水溶液高压侵入下纯硅沸石的含能性能:概述

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摘要

An overview of all the studies on high-pressure intrusion—extrusion of LiCl aqueous solutions in hydrophobic pure silica zeolites (zeosils) for absorption and storage of mechanical energy is presented. Operational principles of heterogeneous lyophobic systems and their possible applications in the domains of mechanical energy storage, absorption, and generation are described. The intrusion of LiCl aqueous solutions instead of water allows to considerably increase energetic performance of zeosil-based systems by a strong rise of intrusion pressure. The intrusion pressure increases with the salt concentration and depends considerably on zeosil framework. In the case of channel-type zeosils, it rises with the decrease of pore opening diameter, whereas for cage-type ones, no clear trend is observed. A relative increase of intrusion pressure in comparison with water is particularly strong for the zeosils with narrow pore openings. The use of highly concentrated LiCl aqueous solutions instead of water can lead to a change of system behavior. This effect seems to be related to a lower formation of silanol defects under intrusion of solvated ions and a weaker interaction of the ions with silanol groups of zeosil framework. The influence of zeosil nanostructure on LiCl aqueous solutions intrusion–extrusion is also discussed.
机译:概述了所有有关高压入侵的研究-在疏水性纯二氧化硅沸石(沸石)中挤压LiCl水溶液以吸收和存储机械能。描述了异质疏液系统的工作原理及其在机械能存储,吸收和产生领域中的可能应用。 LiCl水溶液(而不是水)的入侵可通过大幅提高入侵压力来显着提高基于Zeosil的系统的能量性能。侵入压力随盐浓度的增加而增加,并在很大程度上取决于沸石骨架。在通道型的情况下,它随着开孔直径的减小而增加,而对于笼型的则没有明显的趋势。与水相比,侵入压力相对增加的情况对于具有狭窄孔口的沸石特别强烈。使用高浓度的LiCl水溶液代替水会导致系统行为的改变。这种作用似乎与溶剂化离子侵入下硅烷醇缺陷的形成减少以及离子与沸石骨架的硅烷醇基团的相互作用较弱有关。还讨论了Zeosil纳米结构对LiCl水溶液的挤压和挤压的影响。

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