Theoretical and Experimental Approaches to the Dehydrogenation of Hydrocarbons in Membrane Reactor Full article
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International Symposium on Innovative Materials for Processes in Energy Systems 04-06 Sep 2013 , Fukuoka |
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Source | Innovative Materials for Processes in Energy Systems (Chemical Science & Engineering Series 3): Proc. of the International Symposium on Innovative Materials for Processes in Energy Systems 2013 Compilation, Touka Shobo. Fukuoka.2013. 687 c. ISBN 9784887571730. |
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Output data | Year: 2013, Pages: 424-431 Pages count : 8 | ||||||
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Abstract:
The detailed mathematical model of the catalytic membrane reactor which permits one to study the effect of transport properties of the porous membrane upon process indicators has been developed. The performed modeling of the heat and mass transfer processes within the porous membrane as well as the analysis of the obtained results allowed us to develop recommendations concerning the characteristics of inorganic membranes, and finally, to estimate the efficiency of their use in membrane reactors. Based on formulated recommendations, a series of membranes made of porous ceramics has been prepared. Such minerals as bauxite, kaolinite, talc and serpentinite were used as precursors for synthesis of cordierite ceramics. Porous structure of samples was controlled by means of the burning-out additives.
Cite:
Vedyagin A.A.
, Shelepova E.V.
, Krivoshapkina E.F.
, Ilyina E.V.
, Krivoshapkin P.V.
, Mishakov I.V.
Theoretical and Experimental Approaches to the Dehydrogenation of Hydrocarbons in Membrane Reactor
In compilation Innovative Materials for Processes in Energy Systems (Chemical Science & Engineering Series 3): Proc. of the International Symposium on Innovative Materials for Processes in Energy Systems 2013. – Touka Shobo., 2013. – C.424-431. – ISBN 9784887571730.
Theoretical and Experimental Approaches to the Dehydrogenation of Hydrocarbons in Membrane Reactor
In compilation Innovative Materials for Processes in Energy Systems (Chemical Science & Engineering Series 3): Proc. of the International Symposium on Innovative Materials for Processes in Energy Systems 2013. – Touka Shobo., 2013. – C.424-431. – ISBN 9784887571730.
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