The microstructure, mechanical properties and gas permeability of porous supports of Ce0.9Gd0.1O1.95−δ (CGO) were investigated as a function of sintering temperature and volume fraction of pore former for use in planar asymmetric oxygen transport membranes (OTMs). With increasing the pore former content from 11 vol% to 16 vol%, the gas permeabilities increased by a factor of 5 when support tapes were sintered to comparable densities. The improved permeabilities were due to a more favourable microstructure with larger interconnected pores at a porosity of 45% and a fracture strength of 47±2 MPa (m=7). The achieved gas permeability of 2.25×10−15 m2 for a 0.4 mm thick support will not limit the gas transport for oxygen production but in partia...
[EN] Innovative asymmetric oxygen-transport membrane architectures were prepared by combining...
Dual-phase oxygen transport membranes are fast-growing research interest for application in oxyfuel ...
Ceramic based oxygen transport membranes (OTM) have attracted much attention for alternative product...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
Production of asymmetric ceramic membranes intended for oxygen gas separation was done by producing ...
Oxygen transport membranes (OTM) display a new technology for the generation of energy-efficient oxy...
Asymmetric oxygen transport membranes (OTM) provide a low ionic resistance of the functional separat...
Oxygen transport membranes (OTM) are a promising option to supply oxygen for industrial processes su...
Asymmetric oxygen transport membranes have been extensively studied revealing the importance of the ...
Ceramics with mixed ionic and electronic conductivity are being investigated for oxygen separation f...
The overall permeation rate through asymmetric oxygen transport membranes is significantly governed ...
Asymmetric membrane structure has an attractive potential in the application of O$_{2}$/N$_{2}$ gas ...
[EN] Ceramic oxygen transport membranes (OTMs) enable selective oxygen separation from air at high t...
Ceramic membranes made from mixed ionic and electronic conductive oxide materials have received much...
[EN] An original asymmetric tubular membrane for oxygen production applications was manufactured in ...
[EN] Innovative asymmetric oxygen-transport membrane architectures were prepared by combining...
Dual-phase oxygen transport membranes are fast-growing research interest for application in oxyfuel ...
Ceramic based oxygen transport membranes (OTM) have attracted much attention for alternative product...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
Production of asymmetric ceramic membranes intended for oxygen gas separation was done by producing ...
Oxygen transport membranes (OTM) display a new technology for the generation of energy-efficient oxy...
Asymmetric oxygen transport membranes (OTM) provide a low ionic resistance of the functional separat...
Oxygen transport membranes (OTM) are a promising option to supply oxygen for industrial processes su...
Asymmetric oxygen transport membranes have been extensively studied revealing the importance of the ...
Ceramics with mixed ionic and electronic conductivity are being investigated for oxygen separation f...
The overall permeation rate through asymmetric oxygen transport membranes is significantly governed ...
Asymmetric membrane structure has an attractive potential in the application of O$_{2}$/N$_{2}$ gas ...
[EN] Ceramic oxygen transport membranes (OTMs) enable selective oxygen separation from air at high t...
Ceramic membranes made from mixed ionic and electronic conductive oxide materials have received much...
[EN] An original asymmetric tubular membrane for oxygen production applications was manufactured in ...
[EN] Innovative asymmetric oxygen-transport membrane architectures were prepared by combining...
Dual-phase oxygen transport membranes are fast-growing research interest for application in oxyfuel ...
Ceramic based oxygen transport membranes (OTM) have attracted much attention for alternative product...