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Liczba wyników
2012 | nr 1-4 | 5-11
Tytuł artykułu

Equilibrium and heat of adsorption for selected adsorbent-adsorbate pairs used in adsorption heat pumps

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The results of theoretical studies of adsorption equilibrium for selected adsorbent-adsorbate pairs used in adsorption heat pumps were presented. The following pairs were studied: water- alumina, water- silica gel, water-zeolite 13X, ammonia-activated carbon, ammonia-charcoal, ammonia-clinoptilolite, ammonia-polymer resin. The experimental adsorption equilibrium data, taken from the literature, were described using the Dubinin-Astakhov model. Based on the Clausius-Clapeyron equation, isosteric heat of adsorption was evaluated for all studied adsorbent-adsorbate pairs.
Słowa kluczowe
Wydawca

Rocznik
Tom
Strony
5-11
Opis fizyczny
Bibliogr. 18 poz., tab., wykr.
Twórcy
autor
  • West Pomeranian University of Technology in Szczecin, Polska
Bibliografia
  • Ruthven D.M., 1984, Principles of Adsorption and Adsorption Processes, John Wiley, New York
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  • Cacciola G., Restuccia G., 1994, Progress on adsorption heat pumps, Heat Recovery Systems & CHP, 14, 409-120
  • Srivastava N.C., Eames I.W., 1997, A review of developments in solid-vapour adsorption refrigeration and heat pump systems, Journal of the Institute of Energy, 70, 116-127
  • Meunier F., 1998, Solid sorption heat powered cycles for cooling and heat pumping applications, Applied Thermal Engineering, 18, 715-729
  • Demira H., Mobedi M., Ulkii S., 2008, A review on adsorption heat pump: Problems and solutions, Renewable and Sustainable Energy Reviews, 12, 2381-2403
  • Pilatowsky I., Romero R.J., Isaza C.A., Gamboa S.A., Sebastian P.J., Rivera W., 2011, Cogeneration Fuel Cell-Sorption Air Conditioning Systems, Springer, London
  • San J.-Y., Hsu H.-Ch., 2009, Performance of a multi-bed adsorption heat pump using SWS-1L composite adsorbent and water as the working pair, Applied Thermal Engineering, 29, 1606-1613
  • Huang H., Oike T., Watanabe F., Osaka Y., Kobayashi N., Hasatani M., 2010, Development research on composite adsorbents applied in adsorption heat pump, Applied Thermal Engineering, 30, 1193-1198
  • Chahbani M.H., Labidi J., Paris J., 2004, Modeling of adsorption heat pumps with heat regeneration, Applied Thermal Engineering, 24, 431-447
  • Srivastava N.C., Eames I.W., 1998, A review of adsorbents and adsorbates in solid-vapour adsorption heat pump systems, Applied Thermal Engineering, 18,707-714
  • Anyanwu E.E., Ogueke N.V., 2005, Thermodynamic design procedure for solid adsorption solar refrigerator, Renewable Energy, 30, 81-96
  • Kim J.-H., Lee Ch.-H„ Kim W.-S., Lee J.-S., Kim J.- T., Suh J.-K., Lee J.-M., 2003, Adsorption Equilibria of Water Vapor on Alumina, Zeolite 13X, and a Zeolite X/Activated Carbon Composite,Journal of Chemical and Engineering Data, 48, 137-141
  • Yaws C. L., 1999, Chemical properties handbook, McGraw-Hill. New York
  • Do D. D., 1997, Adsorption Analysis: Equilibria and Kinetics, Imperial College Prerss, London
  • Wang Y., LeVan M.D., 2009, Adsorption Equilibrium of Carbon Dioxide and Water Vapor on Zeolites 5A and 13X and Silica Gel: Pure Components, Journal of Chemical and Engineering Data, 54, 2839-2844
  • Helminen J., . Helenius J., Paatero E., 2001, Adsorption Equilibria of Ammonia Gas on Inorganic and Organic Sorbents at 298.15 K, Journal of Chemical and Engineering Data, 46, 391-399
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPBC-0006-0001
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