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Herausgeber: 
  • Enrico Drioli
  • Giuseppe Barbieri
  • Membrane Engineering for the Treatment of Gases 2 Volume Set 
     

    (Buch)
    Dieser Artikel gilt, aufgrund seiner Grösse, beim Versand als 3 Artikel!


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   Auf Bestellung (Lieferzeit unbekannt)
    Veröffentlichung:  Juli 2011  
    Genre:  Naturwissensch., Medizin, Technik 
    ISBN:  9781849732444 
    EAN-Code: 
    9781849732444 
    Verlag:  RSC Publishing 
    Einband:  Kartoniert  
    Sprache:  English  
    Dimensionen:  H 241 mm / B 159 mm / D 48 mm 
    Gewicht:  1258 gr 
    Seiten:  642 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:
    Membranes already have important applications in artificial organs, the processing of biotechnological products, food manufacture, waste water treatment, and seawater desalination. Their uses in gaseous mixture separations are, however, far from achieving their full potential. Separation of air components, natural gas dehumidification and sweeting, separation and recovery of CO2 from biogas, and H2 from refinery gases are all examples of current industrial applications. The use of membranes for reducing the greenhouse effect and improving energy efficiency has also been suggested. New process intensification strategies in the petrochemical industry have opened up another growth area for gas separation membrane systems and membrane reactors. This two volume set presents the state-of-the-art in membrane engineering for the separation of gases. It addresses future developments in carbon capture and utilization, H2 production and purification, and O2/N2 separation. Topics covered include the: applications of membrane gas separation in the petrochemical industry; implementation of membrane processes for post-combustion capture; commercial applications of membranes in gas separations; simulation of membrane systems for CO2 capture; design and development of membrane reactors for industrial applications; Pd-based membranes in hydrogen production; modelling and simulation of membrane reactors for hydrogen production and purification; novel hybrid membrane/pressure swing adsorption process for gas separation; molecular dynamics as a new tool for membrane design, and physical aging of membranes for gas separations.

      



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