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Catalytic Membrane Reactors – Chemical Upgrading and Pollution Control
This article presents an overview on oxygen permeation, oxidative activation of light hydrocarbons and splitting of various molecules (H2O, N2O, NOx) containing oxygen in a hollow fiber catalytic membrane reactor made of BaCoxFeyZrzO3–δ (BCFZ, x+y+z = 1) which is used to separate oxygen from oxygen containing gases. Innovative reactor concepts are introduced and performances for the various applications are discussed. A detailed view is also given on the thermodynamic and kinetic background with regard to the above mentioned reactions. The potentials in terms of product intensification and energy saving by usage of the BCFZ hollow fibers as reaction vessels are evaluated. However, there are still technological challenges that prevent the described processes from being practiced on commercial scale by now.
Catalytic Membrane Reactors – Chemical Upgrading and Pollution Control
This article presents an overview on oxygen permeation, oxidative activation of light hydrocarbons and splitting of various molecules (H2O, N2O, NOx) containing oxygen in a hollow fiber catalytic membrane reactor made of BaCoxFeyZrzO3–δ (BCFZ, x+y+z = 1) which is used to separate oxygen from oxygen containing gases. Innovative reactor concepts are introduced and performances for the various applications are discussed. A detailed view is also given on the thermodynamic and kinetic background with regard to the above mentioned reactions. The potentials in terms of product intensification and energy saving by usage of the BCFZ hollow fibers as reaction vessels are evaluated. However, there are still technological challenges that prevent the described processes from being practiced on commercial scale by now.
Catalytic Membrane Reactors – Chemical Upgrading and Pollution Control
Czuprat, Oliver (author) / Jiang, Heqing (author)
Chemie Ingenieur Technik ; 83 ; 2219-2228
2011-12-01
10 pages
Article (Journal)
Electronic Resource
English
Wiley | 2024
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