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Exploring storage capacity in thermal energy storage using a combination of solid and liquid desiccant sorption media for water sorption

机译:使用固体和液体干燥剂吸附介质的组合来探索热能储存的存储容量,用于水吸附

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The combination of solid and liquid sorption media for thermal energy storage has been explored in order to improve heat flow as well as storage capacity with respect to the incomplete space-filling of closely packed solid sorbents. Three scenarios were elucidated from which in two cases the liquid/solid combinations perform worse than the neat liquid or solid and a third scenario where the combination performs better than the separate sorbents. We identified a mixture of zeolite 13XBF with tripropylene glycol as an example for such a superior combination showing a similar adsorption curve over time as the pure zeolite or glycol. After complete saturation of the zeolite in the mixture, glycol continues to absorb water, thereby increasing the overall capacity of the system. We identified a low direct attractive interaction (dipolar and dispersive) of the liquid sorbent (tripropylene glycol) with the solid sorbent (zeolite 13XBF) as a prerequisite for improved performance.
机译:已经探索了用于热能存储的固体和液体吸附介质的组合,以改善热流以及相对于紧密包装的固体吸附剂的不完全空间填充的存储容量。 从两种情况下阐明了三种情况,液体/固体组合比整齐的液体或固体表现更差,第三种情况,其中组合比单独的吸附剂更好。 我们将沸石13xBF的混合物与三丙二醇的混合物鉴定为如这种优异组合的一个例子,其显示与纯沸石或二醇的相似吸附曲线。 在混合物中完全饱和沸石后,乙二醇继续吸收水,从而增加了系统的整体容量。 我们鉴定了液体吸附剂(三极二醇)的低直接吸引力的相互作用(双极和分散剂),用固体吸附剂(沸石13xBF)作为改善性能的先决条件。

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