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  4. Characteristics of the membrane utilized in a compact absorber for lithium bromide-water absorption chillers
 
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2008
Conference Paper
Titel

Characteristics of the membrane utilized in a compact absorber for lithium bromide-water absorption chillers

Abstract
"This study aims at investigating experimentally and analytically the characteristics and properties of a membrane contactor utilized to design compact absorbers for lithium bromide/water absorption chillers. The main focus of this study are the factors that influence the water vapor transfer flux into a lithium bromide/water solution in confined narrow channels under vacuum conditions, as well as the properties limits for utilization in compact absorber design. The results indicate that the desired membrane characteristics for this application are as follows: high permeability to water vapor, hydrophobic to the aqueous solution with high liquid entry pressure to avoid wettability of the membrane pores and no capillary condensation of water vapor to avoid blocking of the pores. For practical use, this membrane should have a thin hydrophobic microporous active layer with a thickness up to 60 My-m, mean pore sizes around 0.45 My-m and a porosity of up to 80 %. The active layer should be attached to a porous support layer to meet the strength requirements needed for practical use in the absorber of lithium bromide water absorption chillers."
Author(s)
Ali, Ahmed Hamza H.
Assuit University, Department of Mechanical Engineering
Schwerdt, Peter
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Hauptwerk
9th International Energy Agency Heat Pump Conference 2008. CD-ROM
Konferenz
International Energy Agency Heat Pump Conference 2008
DOI
10.24406/publica-fhg-359281
File(s)
N-87294-1.pdf (1.38 MB) N-87294.pdf (1.16 MB)
Language
English
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Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Tags
  • membrane absorber

  • absorption chiller

  • lithium bromide

  • water

  • Membranabsorber

  • Absorptionskältemasch...

  • Lithiumbromid

  • Wasser

  • Membran-Absorber

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