The creep behaviour of Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF) membrane material was investigated in the temperature range 600-950 degrees C using tubular specimens. Oxygen partial pressure (4 and 2 x 10(-6) mbar), as well as compressive stress (20-63 MPa) were varied. The steady state strain rates from compressive creep tests under axial loading were described by a standard creep equation considering as exponential fitting parameters the influence of temperature, stress, oxygen partial pressure and grain size. Differences in activation energy in the low and high temperature regime appeared to be associated with the disappearance of a second phase. After the creep tests, no significant changes in grain morphology were observed. In addition to t...
The step from the testing of oxygen transport membranes on a lab scale to long-term operation on a l...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...
Based on permeation, which is one of the most important properties for membrane applications, Ba0.5S...
In the present work, the mechanical properties as well as microstructure of perovskite-structured Ba...
Based on permeation, which is one of the most important properties for membrane applications, Ba0.5S...
Advanced oxygen transport membrane designs consist of a thin functional layer supported by a porous ...
The influence of the partial cubic-to-hexagonal phase transformation of Ba0.5Sr0.5Co0.8Fe0.2O3-delta...
In this work membrane materials with mixed ionic / electronic and protonic / electronic conductivity...
Advanced oxygen transport membrane designs rely upon a thin functional layer supported by a porous s...
Considering the challenging conditions imposed by application of membranes in an asymmetric design, ...
The mixed ion–electron conductor Ba0.5Sr0.5Co0.8Fe0.2O3−δ has a strong application potential as high...
In this work membrane materials with mixed ionic / electronic and protonic / electronic conductivity...
Mechanical stability of asymmetric Ba0.5Sr0.5Co0.8Fe0.2O3-δ (BSCF) membrane tubes was improved by ad...
Compressive creep tests have been performed on perovskite-type oxides Ba0.5Sr0.5(Co0.8Fe0.2)1–xZrxO3...
The step from the testing of oxygen transport membranes on a lab scale to long-term operation on a l...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...
Based on permeation, which is one of the most important properties for membrane applications, Ba0.5S...
In the present work, the mechanical properties as well as microstructure of perovskite-structured Ba...
Based on permeation, which is one of the most important properties for membrane applications, Ba0.5S...
Advanced oxygen transport membrane designs consist of a thin functional layer supported by a porous ...
The influence of the partial cubic-to-hexagonal phase transformation of Ba0.5Sr0.5Co0.8Fe0.2O3-delta...
In this work membrane materials with mixed ionic / electronic and protonic / electronic conductivity...
Advanced oxygen transport membrane designs rely upon a thin functional layer supported by a porous s...
Considering the challenging conditions imposed by application of membranes in an asymmetric design, ...
The mixed ion–electron conductor Ba0.5Sr0.5Co0.8Fe0.2O3−δ has a strong application potential as high...
In this work membrane materials with mixed ionic / electronic and protonic / electronic conductivity...
Mechanical stability of asymmetric Ba0.5Sr0.5Co0.8Fe0.2O3-δ (BSCF) membrane tubes was improved by ad...
Compressive creep tests have been performed on perovskite-type oxides Ba0.5Sr0.5(Co0.8Fe0.2)1–xZrxO3...
The step from the testing of oxygen transport membranes on a lab scale to long-term operation on a l...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...
In application of perovskite as oxygen conducting materials the membrane is operated at elevated tem...