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  1. Korean Journal of Chemical Engineering
  2. Korean Journal of Chemical Engineering : Volume 18
  3. Korean Journal of Chemical Engineering : Volume 18, Issue 6, November 2001
  4. Inorganic membranes and membrane reactors
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Korean Journal of Chemical Engineering : Volume 34
Korean Journal of Chemical Engineering : Volume 33
Korean Journal of Chemical Engineering : Volume 32
Korean Journal of Chemical Engineering : Volume 31
Korean Journal of Chemical Engineering : Volume 30
Korean Journal of Chemical Engineering : Volume 29
Korean Journal of Chemical Engineering : Volume 28
Korean Journal of Chemical Engineering : Volume 27
Korean Journal of Chemical Engineering : Volume 26
Korean Journal of Chemical Engineering : Volume 25
Korean Journal of Chemical Engineering : Volume 24
Korean Journal of Chemical Engineering : Volume 23
Korean Journal of Chemical Engineering : Volume 22
Korean Journal of Chemical Engineering : Volume 21
Korean Journal of Chemical Engineering : Volume 20
Korean Journal of Chemical Engineering : Volume 19
Korean Journal of Chemical Engineering : Volume 18
Korean Journal of Chemical Engineering : Volume 18, Issue 6, November 2001
Inorganic membranes and membrane reactors
Superstructure of yOTs-the network-based chemical process operator training system for multiple trainees
A stochastic analysis of the flow of two immiscible fluids in porous media: The case when the viscosities of the fluids are equal
Experimental studies on the flow of two immiscible fluids in porous media using X-ray computed tomography: The case when the viscosities of the fluids are equal
Characteristics of transient blood flow in MHVs with different maximum opening angles using fluid-structure interaction method
Molecular simulation study on the colloidal suspension within dilute fibrous media: The effect of particle concentration on partitioning
Development of counter-current flow limitation model applicable to a sharp-edged liquid entrance
Oxidation and reduction characteristics of oxygen carrier particles and reaction kinetics by unreacted core model
Effect of water on liquid phase DME synthesis from syngas over hybrid catalysts composed of Cu/ZnO/Al$_{2}$O$_{3}$ and γ-Al$_{2}$O$_{3}$
Coke formation on the surface of α-Al$_{2}$O$_{3}$ in the catalytic pyrolysis of naphtha
Liquid-phase degradation of HDPE over alkali-treated natural zeolite catalysts
Degradation of polystyrene in supercritical n-Hexane
New aspects of heterogeneous photocatalysts for water decomposition
Preparation, crystal structure, and photocatalytic activity of TiO$_{2}$ films by chemical vapor deposition
Correlations among defect type, photoconductivity and photoreactivity of doped TiO$_{2}$
Effect of calcination temperature and addition of silica, zirconia, alumina on the photocatalytic activity of titania
Photocatalytic inactivation of algal growth in eutrophic water with hollow glass beads
Photochemical production of hydrogen from alkaline solution containing polysulfide dyes
Photocatalytic reactivity and diffusing OH radicals in the reaction medium containing TiO$_{2}$ particles
Thickness effect in the photocatalytic activity of TiO$_{2}$ thin films derived from sol-gel process
Physical properties and photocatalytic performance of TiO$_{2}$ coated stainless steel plate
Photocatalytic activity of metal ion (Fe or W) doped titania
Photocatalytic activation of CO$_{2}$ under visible light by Rhenium complex encapsulated in molecular sieves
Photocatalytic oxidation of toluene over TiO$_{2}$ catalysts supported on glass fiber
Photocatalytic oxidation of ethylene to CO$_{2}$ and H$_{2}$O on ultrafine powdered TiO$_{2}$ photocatalysts: Effect of the presence of O$_{2}$ and H$_{2}$O and the addition of Pt
Effect of humidity on the photocatalytic degradation of trichloroethylene in gas Phase over TiO$_{2}$ thin films treated by different conditions
Effect of precursors on the morphology and the photocatalytic water-splitting activity of layered perovskite La$_{2}$Ti$_{2}$O$_{7}$
Economic and environmental applications for recent innovations of nonferrous metallurgy in some industrial nations
Removal of heavy metals in plating wastewater using carboxylated alginic acid
Gasification of food waste with steam in fluidized bed
Synthesis and characterization of polymeric inorganic coagulants for water treatment
The application of simulated moving bed chromatography for the separation between 2,6- and 2,7-dimethylnaphthalene
Ion separation of binary metallic aqueous solutions at acidic Langmuir monolayer surfaces
Isolation of saponin-free fraction from Ginseng (Panax ginseng C.A. Meyer) and its effects on the function of neutrophils
The preparation and surface characterization of zirconia polymorphs
Characteristics of solid hold up and circulation rate in the CFB reactor with 3-loops
Simultaneous experiments of sulfidation and regeneration in two pressurized fluidized-bed reactors for hot gas desulfurization of IGCC
Trapping characteristics of cesium in off-gas stream using fly ash filter
Wavelet transform analysis of pressure fluctuation signals in a three-phase fluidized bed
Development and evaluation of multilayer air filter media
Korean Journal of Chemical Engineering : Volume 18, Issue 5, September 2001
Korean Journal of Chemical Engineering : Volume 18, Issue 4, July 2001
Korean Journal of Chemical Engineering : Volume 18, Issue 3, May 2001
Korean Journal of Chemical Engineering : Volume 18, Issue 2, March 2001
Korean Journal of Chemical Engineering : Volume 18, Issue 1, January 2001
Korean Journal of Chemical Engineering : Volume 17
Korean Journal of Chemical Engineering : Volume 16
Korean Journal of Chemical Engineering : Volume 15
Korean Journal of Chemical Engineering : Volume 14

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Inorganic membranes and membrane reactors

Content Provider Springer Nature Link
Author Hwang, Sun Tak
Copyright Year 2001
Abstract The inorganic membrane reactor is a combined unit operation of chemical reactions and membrane separations. By having a membrane reactor, the downstream separation load can be reduced. Also, the yields can be increased and conversion can be improved for equilibrium limited reactions. However, many of the industrial chemical reactions take place at high temperature that the conventional polymeric membranes cannot withstand. A great deal of research has been done recently to develop ion-conducting ceramic membranes. Many of these have been successfully employed to form membrane reactors for many industrially relevant chemical reactions, such as hydrogenation, dehydrogenation, oxidation, coupled reactions, and decomposition reactions. An overview is given for the area of inorganic membrane preparations and membrane reactors. Many examples of petrochemical interests are presented, including hydrocarbon conversions and fuel cell applications.
Starting Page 775
Ending Page 787
Page Count 13
File Format PDF
ISSN 02561115
Journal Korean Journal of Chemical Engineering
Volume Number 18
Issue Number 6
e-ISSN 19757220
Language English
Publisher Springer-Verlag
Publisher Date 2001-01-01
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Inorganic Membranes Inorganic Membrane Reactions Ceramic Membranes Palladium Membranes Fuel Cells Industrial Chemistry/Chemical Engineering Catalysis Materials Science Biotechnology
Content Type Text
Resource Type Article
Subject Chemistry Chemical Engineering
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