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Titlebook: Carbon-based Membranes for Separation Processes; Ahmad Fauzi Ismail,Dipak Rana,Henry C. Foley Book 2011 Springer Science+Business Media, L

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Membrane Module Constructions, modules currently, one from Carbon Membranes Ltd (Israel) with hollow fiber configuration and the other from Blue Membranes GmbH (Germany) with honey comb configuration. In this chapter, a detailed description of the latter module is given. Information on the commercial modules based on hollow fibe
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Other Carbon-Based Membranes,)-compatible fabrication process and showed gas and liquid permeation rates orders of magnitude higher than the calculated values based on either Knudsen or Poiseiulle flow mechanism, due most likely to extreme smoothness of the inner wall of carbon nanotubes. This proved the theoretical prediction
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Applications of Carbon-Based Membranes for Separation Purposes,es separation. In this chapter, however, emphasis is on CMSMs applications in other processes than gas separation and RO/NF/UF/MF. Those processes include vapor separation, pervaporation, fuel cell applications, water treatment, membrane reactor etc. The preparation, characterization and performance
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Economic Evaluation,ed cost analysis involved in two applications of CMSMs; (1) for the recovery of hydrogen from the natural gas network (Granger, H., Int J Hydrogen Energy 33(9):2379–2388, 2008) and (2) CO. removal from landfill gas (Granger, H., J Membr Sci 306:307–317).
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Salomon Sambou,Souhaibou Sambouost-treatment includes post oxidation, chemical vapour deposition, post pyrolysis, fouling reduction and coating. In this chapter, detailed discussions are made to optimize each factor for obtaining CMSMs of the highest quality.
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Masseye Gaye,Cheikh Lo,Amadou Syiquid permeation experiments are included in this chapter. Physical characterization includes TGA, WAXD, SEM, TEM, AFM, FTIR and pore size measurement by adsorption. There are many other characterization methods, but the above methods have been most commonly used in the CMSM literature.
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