Advanced design concepts for the application of oxygen transport ceramic membranes are based on thin layers supported by porous substrates. One suitable support material in this respect is porous MgO. However, a careful consideration of the mechanical stability is required to warrant long term performance and reliability under application relevant thermo-mechanical loads. The current work summarizes the effect of the sintering conditions on porosity and mechanical properties and gives elastic modulus and fracture stress as a function of temperature. An enhancement of the strength by the addition of boehmite to MgO was tested. Elastic moduli are determined and compared as obtained by indentation and bending tests. With respect to fracture, s...
Dual phase oxygen transport membranes, consisting of ionic and electronicconducting phases, exhibit ...
In the present quarter, oxygen transport perovskite ceramic membranes are evaluated for strength and...
Dual phase oxygen transport membranes, consisting of ionic and electronic conducting phases, exhibit...
Advanced design concepts for the application of oxygen transport ceramic membranes are based on thin...
Interest in ceramic transport membrane materials has increased significantly leading also to questio...
Advanced membrane concepts are based on thin layers that require a mechanically robust porous substr...
Ceramic based oxygen transport membranes (OTM) have attracted much attention for alternative product...
The mechanical stability of porous Ba0.5Sr0.5Co0.8Fe0.2O3-d (BSCF) material was investigated using d...
One of the most efficient ways to realize an Oxy-fuel process is the utilization of ceramic oxygen t...
Porous substrates are a prerequisite for advanced oxygen transport membranes. In particular, phase s...
Proton-conducting ceramic tubular membranes have been characterized via a fourpoint bending techniqu...
The performance of ceramic gas separation membranes can be increased by reducing their thickness. To...
Mixed ionic electronic ceramic transport membranes have a large potential for industrial oxygen supp...
Flat microfiltration mullite (3Al2O32SiO2) membranes were prepared via phase-inversion tape casting ...
In this paper, based on the study of effects of various physical mechanisms on the fracture strength...
Dual phase oxygen transport membranes, consisting of ionic and electronicconducting phases, exhibit ...
In the present quarter, oxygen transport perovskite ceramic membranes are evaluated for strength and...
Dual phase oxygen transport membranes, consisting of ionic and electronic conducting phases, exhibit...
Advanced design concepts for the application of oxygen transport ceramic membranes are based on thin...
Interest in ceramic transport membrane materials has increased significantly leading also to questio...
Advanced membrane concepts are based on thin layers that require a mechanically robust porous substr...
Ceramic based oxygen transport membranes (OTM) have attracted much attention for alternative product...
The mechanical stability of porous Ba0.5Sr0.5Co0.8Fe0.2O3-d (BSCF) material was investigated using d...
One of the most efficient ways to realize an Oxy-fuel process is the utilization of ceramic oxygen t...
Porous substrates are a prerequisite for advanced oxygen transport membranes. In particular, phase s...
Proton-conducting ceramic tubular membranes have been characterized via a fourpoint bending techniqu...
The performance of ceramic gas separation membranes can be increased by reducing their thickness. To...
Mixed ionic electronic ceramic transport membranes have a large potential for industrial oxygen supp...
Flat microfiltration mullite (3Al2O32SiO2) membranes were prepared via phase-inversion tape casting ...
In this paper, based on the study of effects of various physical mechanisms on the fracture strength...
Dual phase oxygen transport membranes, consisting of ionic and electronicconducting phases, exhibit ...
In the present quarter, oxygen transport perovskite ceramic membranes are evaluated for strength and...
Dual phase oxygen transport membranes, consisting of ionic and electronic conducting phases, exhibit...