Ion transport membrane module and vessel design

An ion transport membrane system comprising (a) a pressure vessel having an interior, an exterior, an inlet, and an outlet; (b) a plurality of planar ion transport membrane modules disposed in the interior of the pressure vessel and arranged in series, each membrane module comprising mixed metal oxi...

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Main Authors CHRISTOPHER M CHEN, RENE HENDRIK ELIAS VAN DOORN, VANERIC EDWARD STEIN, MICHAEL FRANCIS CAROLAN, KEITH GERARD RACKERS, PHILLIP ANDREW ARMSTRONG, HAROLD W WAHLE, SHANKAR NATARAJ, MERRILL ANDERSON WILSON, KURT E KNEIDEL, JAMES ERIK BLAKE, THEODORE R OHRN
Format Patent
LanguageEnglish
Published 24.02.2005
Edition7
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Abstract An ion transport membrane system comprising (a) a pressure vessel having an interior, an exterior, an inlet, and an outlet; (b) a plurality of planar ion transport membrane modules disposed in the interior of the pressure vessel and arranged in series, each membrane module comprising mixed metal oxide ceramic material and having an interior region and an exterior region, wherein any inlet and any outlet of the pressure vessel are in flow communication with exterior regions of the membrane modules; and (c) one or more gas manifolds in flow communication with interior regions of the membrane modules and with the exterior of the pressure vessel. The ion transport membrane system may be utilized in a gas separation device to recover oxygen from an oxygen-containing gas or as an oxidation reactor to oxidize compounds in a feed gas stream by oxygen permeated through the mixed metal oxide ceramic material of the membrane modules.
AbstractList An ion transport membrane system comprising (a) a pressure vessel having an interior, an exterior, an inlet, and an outlet; (b) a plurality of planar ion transport membrane modules disposed in the interior of the pressure vessel and arranged in series, each membrane module comprising mixed metal oxide ceramic material and having an interior region and an exterior region, wherein any inlet and any outlet of the pressure vessel are in flow communication with exterior regions of the membrane modules; and (c) one or more gas manifolds in flow communication with interior regions of the membrane modules and with the exterior of the pressure vessel. The ion transport membrane system may be utilized in a gas separation device to recover oxygen from an oxygen-containing gas or as an oxidation reactor to oxidize compounds in a feed gas stream by oxygen permeated through the mixed metal oxide ceramic material of the membrane modules.
Author THEODORE R OHRN
CHRISTOPHER M CHEN
MICHAEL FRANCIS CAROLAN
RENE HENDRIK ELIAS VAN DOORN
MERRILL ANDERSON WILSON
KEITH GERARD RACKERS
SHANKAR NATARAJ
JAMES ERIK BLAKE
KURT E KNEIDEL
VANERIC EDWARD STEIN
PHILLIP ANDREW ARMSTRONG
HAROLD W WAHLE
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– fullname: KEITH GERARD RACKERS
– fullname: PHILLIP ANDREW ARMSTRONG
– fullname: HAROLD W WAHLE
– fullname: SHANKAR NATARAJ
– fullname: MERRILL ANDERSON WILSON
– fullname: KURT E KNEIDEL
– fullname: JAMES ERIK BLAKE
– fullname: THEODORE R OHRN
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Snippet An ion transport membrane system comprising (a) a pressure vessel having an interior, an exterior, an inlet, and an outlet; (b) a plurality of planar ion...
SourceID epo
SourceType Open Access Repository
SubjectTerms CHEMISTRY
COMPOUNDS THEREOF
INORGANIC CHEMISTRY
METALLURGY
NON-METALLIC ELEMENTS
PERFORMING OPERATIONS
PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
SEPARATION
TRANSPORTING
Title Ion transport membrane module and vessel design
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