Oxygen production by air separation is of great importance in both environmental and industrial processes as most large scale clean energy technologies require oxygen as feed gas. Currently the conventional cryogenic air separation unit is a major economic impediment to the deployment of these clean energy technologies with carbon capture (i.e. oxy-fuel combustion ). Dense ceramic perovskite membranes are envisaged to replace the cryogenics and reduce O2 production costs by 35% or more; which can significantly cut the energy penalty by 50% when integrated in oxy-fuel power plant for CO2 capture. This paper reviews the current progress in the development of dense ceramic membranes for oxygen production. The principles, advantages or disadvan...
Membrane technology is known as a cheaper alternative approach that capable to yield high purity oxy...
[EN] Ceramic oxygen transport membranes (OTMs) enable selective oxygen separation from air at high t...
Oxygen transport membranes (OTMs) are a promising alternative to cryogenic air separation (ASU) or p...
Oxygen production by air separation is of great importance in both environmental and industrial proc...
AbstractThis paper is devoted to the state of the art of the most important aspects of high temperat...
Dense ceramic membranes made from mixed oxygen-ionic and electronic conducting perovskite-related ox...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
In the 25 years since the first report of mixed ionic and electronic conducting ceramics, perovskite...
The most significant cost associated with partial oxidation of methane to syngas is that of the oxyg...
This chapter addresses the latest developments in ceramic materials for use in oxygen transport memb...
A review of both dense and porous ceramic membranes for high temp. oxidn. reactions, i.e. partial an...
© Springer Science+Business Media, LLC 2012 and Springer International Publishing Switzerland 2017. ...
The application of mixed ionic and electronic conductors as oxygen separating membranes o®er an attr...
A strategy for the systematic selection of perovskite-type mixed conducting membranes with high oxyg...
Mixed ionic electronic conducting (MIEC) membranes have received attention as promising materials fo...
Membrane technology is known as a cheaper alternative approach that capable to yield high purity oxy...
[EN] Ceramic oxygen transport membranes (OTMs) enable selective oxygen separation from air at high t...
Oxygen transport membranes (OTMs) are a promising alternative to cryogenic air separation (ASU) or p...
Oxygen production by air separation is of great importance in both environmental and industrial proc...
AbstractThis paper is devoted to the state of the art of the most important aspects of high temperat...
Dense ceramic membranes made from mixed oxygen-ionic and electronic conducting perovskite-related ox...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
In the 25 years since the first report of mixed ionic and electronic conducting ceramics, perovskite...
The most significant cost associated with partial oxidation of methane to syngas is that of the oxyg...
This chapter addresses the latest developments in ceramic materials for use in oxygen transport memb...
A review of both dense and porous ceramic membranes for high temp. oxidn. reactions, i.e. partial an...
© Springer Science+Business Media, LLC 2012 and Springer International Publishing Switzerland 2017. ...
The application of mixed ionic and electronic conductors as oxygen separating membranes o®er an attr...
A strategy for the systematic selection of perovskite-type mixed conducting membranes with high oxyg...
Mixed ionic electronic conducting (MIEC) membranes have received attention as promising materials fo...
Membrane technology is known as a cheaper alternative approach that capable to yield high purity oxy...
[EN] Ceramic oxygen transport membranes (OTMs) enable selective oxygen separation from air at high t...
Oxygen transport membranes (OTMs) are a promising alternative to cryogenic air separation (ASU) or p...