Assessment of adsorbate density models for numerical simulations of zeolite-based heat storage applications

C Lehmann, S Beckert, R Gläser, O Kolditz, T Nagel - Applied Energy, 2017 - Elsevier
Applied Energy, 2017Elsevier
The study of water sorption in microporous materials is of increasing interest, particularly in
the context of heat storage applications. The potential-theory of micropore volume filling
pioneered by Polanyi and Dubinin is a useful tool for the description of adsorption equilibria.
Based on one single characteristic curve, the system can be extensively characterised in
terms of isotherms, isobars, isosteres, enthalpies etc. However, the mathematical description
of the adsorbate density's temperature dependence has a significant impact especially on …
Abstract
The study of water sorption in microporous materials is of increasing interest, particularly in the context of heat storage applications. The potential-theory of micropore volume filling pioneered by Polanyi and Dubinin is a useful tool for the description of adsorption equilibria. Based on one single characteristic curve, the system can be extensively characterised in terms of isotherms, isobars, isosteres, enthalpies etc. However, the mathematical description of the adsorbate density’s temperature dependence has a significant impact especially on the estimation of the energetically relevant adsorption enthalpies. Here, we evaluate and compare different models existing in the literature and elucidate those leading to realistic predictions of adsorption enthalpies. This is an important prerequisite for accurate simulations of heat and mass transport ranging from the laboratory scale to the reactor level of the heat store.
Elsevier
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