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Modified silicone-SAPO34 composite materials for adsorption thermal energy storage systems

Academic Article
Publication Date:
2020
abstract:
In this work, novel silicone-SAPO34 composite materials are proposed for application in adsorption thermal energy storage systems. The innovative composite materials were obtained through a mold foaming process activated by a dehydrogenative coupling reaction between properly selected siloxane compounds. Morphology analysis by optical microscopy and measurement of the mechanical properties of the foamed materials at varying zeolite content demonstrated a quite homogeneous open-cell structure and good structural stability of the foam. Water adsorption isotherms of the adsorbent foams expanded in free space and inside paperboard were measured by a gravimetric adsorption apparatus, demonstrating that the presence of the polymeric fraction does not affect the adsorption capacity of the SAPO34 fraction added in the composite foam. Finally, main adsorption and thermodynamic properties of the proposed foam have been compared with those of other adsorbent materials, confirming the possible use of these new composite foams as adsorbent materials for adsorption thermal energy storage systems.
Iris type:
14.a.1 Articolo su rivista
Keywords:
Adsorption; Foam; Heat storage; SAPO34; Zeolite
List of contributors:
Calabrese, L.; De Antonellis, S.; Vasta, S.; Brancato, V.; Freni, A.
Authors of the University:
CALABRESE Luigi
Handle:
https://iris.unime.it/handle/11570/3211241
Full Text:
https://iris.unime.it//retrieve/handle/11570/3211241/444234/2020_AS_10_8715.pdf
Published in:
APPLIED SCIENCES
Journal
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