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Effect of water on the physical properties and carbon dioxide capture capacities of liquid-like Nanoparticle Organic Hybrid Materials and their corresponding polymers

机译:水对液体状纳米颗粒有机杂化材料及其相应聚合物的物理性质和二氧化碳捕获能力的影响

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Binary systems composed of liquid-like Nanoparticle Organic Hybrid Materials (NOHMs) and the secondary fluid (i.e., water) were prepared, and their thermal stabilities, densities, viscosities, and CO_2 absorption capacities were investigated. Recent work has suggested NOHMs as an alternative CO_2 capture media with interesting chemical and physical tunability. Anhydrous CO_2 capture solvents often degrade when they are exposed to water, while flue gas generally contains about 8-16% water. Thus, this study was conducted to investigate the effect of water on the NOHMs' properties relevant to CO_2 capture as well as the chemical and thermal stabilities of H_2O-loaded NOHMs. It was found that water acted as an antisolvent of NOHMs, and therefore, caused a decreased CO_2 capture capacity. On the other hand, the results indicated that while water did not affect the NOHMs' thermal stability, it significantly helped lowering their density and viscosity. In order to investigate the effect of intermolecular interactions among two fluids on the density and viscosity, the excess volumes and viscosity deviations were calculated and correlated with Redlich-Kister equations. The trends revealed the existence of strong intermolecular interactions between water molecules and the poly(ethlyne glycol) component of NOHMs, which may have caused the drastic decrease in the NOHMs' viscosity with the addition of water.
机译:制备了由类液体纳米颗粒有机杂化材料(NOHM)和辅助流体(即水)组成的二元体系,并研究了它们的热稳定性,密度,粘度和CO_2吸收能力。最近的工作表明,NOHMs可替代CO_2捕获介质,具有有趣的化学和物理可调性。当无水CO_2捕获溶剂暴露于水时,它们通常会降解,而烟道气通常包含约8-16%的水。因此,本研究旨在研究水对NOHMs与CO_2捕获有关的特性以及H_2O负载的NOHMs的化学和热稳定性的影响。发现水充当NOHM的反溶剂,因此导致降低的CO 2捕集能力。另一方面,结果表明,尽管水不影响NOHM的热稳定性,但可以显着帮助降低NOHM的密度和粘度。为了研究两种流体之间的分子间相互作用对密度和粘度的影响,计算了过量体积和粘度偏差并将其与Redlich-Kister方程相关联。趋势表明,水分子与NOHMs的聚乙二醇成分之间存在强烈的分子间相互作用,这可能导致添加水后NOHMs的粘度急剧下降。

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