© Springer Science+Business Media, LLC 2012 and Springer International Publishing Switzerland 2017. Mixed ionic-electronic conducting (MIEC) ceramic membrane has rapidly become an attractive alternative technology to conventional cryogenic distillation for oxygen separation from air. Given the heat integration opportunity in most energy generation processes, this technology offers lower cost and energy penalty due to its capability to produce pure oxygen at high temperature ( > 800°C). Using pure oxygen for combustion in turn facilitates the production of concentrated carbon dioxide gas downstream which can be easily captured and handled to mitigate the greenhouse gas effect. This chapter overviews and discusses all essential aspects to ...
The fabrication of mixed ionic-electronic conducting (MIEC) ceramic-based membranes for oxygen separ...
\u3cp\u3e Mixed ionic-electronic conducting...
This paper presents a review of different chemical compositions that are used in the production of m...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Mixed ionic-electronic conducting ceramic membrane-based oxygen separation technology attracts great...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
© 2018 Elsevier B.V. Oxygen demand has continuously increased given its indispensable role as a raw ...
abstract: Mixed-ionic electronic conducting (MIEC) oxides have drawn much attention from researchers...
Oxygen transport membranes (OTMs) are attracting great interest for the separation of oxygenfrom air...
Mixed ionic electronic conducting (MIEC) membranes have received attention as promising materials fo...
Ceramic membranes based on Mixed-Ionic-and-Electronic-Conducting (MIEC) oxides are capable of separa...
Oxygen production by air separation is of great importance in both environmental and industrial proc...
Oxygen permeable membrane, which has the advantages of high separation selectivity, low energy consu...
AbstractThis paper is devoted to the state of the art of the most important aspects of high temperat...
Ceramic high temperature oxygen transport membranes (OTMs) represent a promising alternative for the...
The fabrication of mixed ionic-electronic conducting (MIEC) ceramic-based membranes for oxygen separ...
\u3cp\u3e Mixed ionic-electronic conducting...
This paper presents a review of different chemical compositions that are used in the production of m...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Mixed ionic-electronic conducting ceramic membrane-based oxygen separation technology attracts great...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
© 2018 Elsevier B.V. Oxygen demand has continuously increased given its indispensable role as a raw ...
abstract: Mixed-ionic electronic conducting (MIEC) oxides have drawn much attention from researchers...
Oxygen transport membranes (OTMs) are attracting great interest for the separation of oxygenfrom air...
Mixed ionic electronic conducting (MIEC) membranes have received attention as promising materials fo...
Ceramic membranes based on Mixed-Ionic-and-Electronic-Conducting (MIEC) oxides are capable of separa...
Oxygen production by air separation is of great importance in both environmental and industrial proc...
Oxygen permeable membrane, which has the advantages of high separation selectivity, low energy consu...
AbstractThis paper is devoted to the state of the art of the most important aspects of high temperat...
Ceramic high temperature oxygen transport membranes (OTMs) represent a promising alternative for the...
The fabrication of mixed ionic-electronic conducting (MIEC) ceramic-based membranes for oxygen separ...
\u3cp\u3e Mixed ionic-electronic conducting...
This paper presents a review of different chemical compositions that are used in the production of m...