In this work, adsorbent coatings on aluminum surfaces were prepared by dip-coating method starting from a water suspension of SAPO-34 zeolite and a silane-based binder. Silane-zeolite coatings morphology and surface coverage grade were evaluated by scanning electron microscopy. Adhesive and mechanical properties were evaluated by peel, pull-off, impact and micro-hardness tests, confirming the good interaction between metal substrate, binder and zeolite. Adsorption equilibrium and kinetics of water vapour adsorption on the adsorbent coating were studied in the range T = 30-150 °C and pH2O = 11 mbar using a CAHN 2000 thermo-balance. It was found that, in the investigated conditions, the organic binder doesn't affect the water adsorption capacity and adsorption kinetics of the original SAPO-34 zeolite. Subsequently, the zeolite coating was applied on a finned flat-tubes aluminum heat exchanger realizing a full-scale AdHEx with an uniform adsorbent coating 0.1 mm thick and a metal/adsorbent mass ratio = 6. The cooling capacity of the realized coated AdHEx was measured by a lab-scale adsorption chiller under realistic operating conditions for air conditioning applications. The coated AdHEx produced up to 675 W/kgads specific cooling power with a cycle time of 5 min. Adsorption stability of the coated adsorber subjected to 600 sorption cycles was successfully verified. © 2015 Elsevier Ltd.

SAPO-34 coated adsorbent heat exchanger for adsorption chillers

FRENI, angelo
Primo
;
CALABRESE, Luigi;CAPRI', ANGELA;FRAZZICA, ANDREA
Penultimo
;
SAPIENZA, ALESSIO
Ultimo
2015-01-01

Abstract

In this work, adsorbent coatings on aluminum surfaces were prepared by dip-coating method starting from a water suspension of SAPO-34 zeolite and a silane-based binder. Silane-zeolite coatings morphology and surface coverage grade were evaluated by scanning electron microscopy. Adhesive and mechanical properties were evaluated by peel, pull-off, impact and micro-hardness tests, confirming the good interaction between metal substrate, binder and zeolite. Adsorption equilibrium and kinetics of water vapour adsorption on the adsorbent coating were studied in the range T = 30-150 °C and pH2O = 11 mbar using a CAHN 2000 thermo-balance. It was found that, in the investigated conditions, the organic binder doesn't affect the water adsorption capacity and adsorption kinetics of the original SAPO-34 zeolite. Subsequently, the zeolite coating was applied on a finned flat-tubes aluminum heat exchanger realizing a full-scale AdHEx with an uniform adsorbent coating 0.1 mm thick and a metal/adsorbent mass ratio = 6. The cooling capacity of the realized coated AdHEx was measured by a lab-scale adsorption chiller under realistic operating conditions for air conditioning applications. The coated AdHEx produced up to 675 W/kgads specific cooling power with a cycle time of 5 min. Adsorption stability of the coated adsorber subjected to 600 sorption cycles was successfully verified. © 2015 Elsevier Ltd.
2015
Inglese
STAMPA
82
1
7
7
http://www.scopus.com/inward/record.url?eid=2-s2.0-84924855080&partnerID=40&md5=5422ef170259d83f8b695fb3ce9cc8ba
Internazionale
Esperti anonimi
Adsorbents; Adsorption; Air conditioning; Aluminum; Binders; Coatings; Cooling; Cooling systems; Gas adsorption; Heat exchangers; Mechanical properties; Scanning electron microscopy, Adsorbers; Adsorption cooling; Adsorption equilibria; Aluminum heat exchangers; Microhardness tests; SAPO-34; Specific cooling power; Water adsorption capacity, Aluminum coatings; Adsorption cooling; Coated adsorber; Coating; SAPO 34
no
info:eu-repo/semantics/article
Freni, Angelo; Bonaccorsi, L.; Calabrese, Luigi; Capri', Angela; Frazzica, Andrea; Sapienza, Alessio
14.a Contributo in Rivista::14.a.1 Articolo su rivista
6
262
reserved
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3059246
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