The hydrothermal stability of microporous niobia–silica membranes was investigated and compared with silica membranes. The membranes were exposed to hydrothermal conditions at 150 and 200 °C for 70 h. The change of pore structure before and after exposure to steam was probed by single-gas permeation measurements and nanopermporometry. The hydrothermal stability of the niobia–silica membrane was found to be higher than that of silica. After hydrothermal treatment at 200 °C, the hydrogen permeance of the niobia–silica top layer had declined by 32%, while the H2 permeance of the silica top layer was reduced by 73%. The apparent activation energies of the H2 permeance were 12.2 ± 0.2 and 15.3 ± 0.7 kJ mol−1 for silica and niobia–silica, respect...
Mesostructured silica SBA-15 materials with different structural parameters, such as pore size, pore...
Network size control was evaluated for microporous membranes derived from triethoxysilane (TRIES) th...
Cobalt silica membranes were fabricated using sol–gel techniques for separation of H2 in a membrane ...
The hydrothermal stability of microporous niobia–silica membranes was investigated and compared with...
Hybrid silica membranes have demonstrated to possess a remarkable hydrothermal stability in pervapor...
Hydrothermal stability is a crucial factor for the application of microporous silica-based membranes...
Fluorocarbon-modified silica membranes were deposited on γ-Al2O3/α-Al2O3 supports by the sol−gel tec...
This thesis describes the development of ceramic membranes suitable for hydrogen separation and CO2 ...
Despite the use of sol-gel derived nanoporous silica membranes in substitution of traditional separa...
The hydrothermal stability of microporous silica hybrid sol-gel derived membranes is often only test...
Hydrogen-permselective amorphous silica membranes were synthesized by the counter diffusion chemical...
The permeation, hydrothermal stability (steam resilience) and regeneration behaviour of carbonised t...
Three different microporous niobia–silica gas separation membranes with an exceptionally low permeab...
This chapter discusses the development of silica membranes for gas separation at higher temperatures...
In this work we compare the hydrothermal stability performance of a Templated Molecular Sieve Silica...
Mesostructured silica SBA-15 materials with different structural parameters, such as pore size, pore...
Network size control was evaluated for microporous membranes derived from triethoxysilane (TRIES) th...
Cobalt silica membranes were fabricated using sol–gel techniques for separation of H2 in a membrane ...
The hydrothermal stability of microporous niobia–silica membranes was investigated and compared with...
Hybrid silica membranes have demonstrated to possess a remarkable hydrothermal stability in pervapor...
Hydrothermal stability is a crucial factor for the application of microporous silica-based membranes...
Fluorocarbon-modified silica membranes were deposited on γ-Al2O3/α-Al2O3 supports by the sol−gel tec...
This thesis describes the development of ceramic membranes suitable for hydrogen separation and CO2 ...
Despite the use of sol-gel derived nanoporous silica membranes in substitution of traditional separa...
The hydrothermal stability of microporous silica hybrid sol-gel derived membranes is often only test...
Hydrogen-permselective amorphous silica membranes were synthesized by the counter diffusion chemical...
The permeation, hydrothermal stability (steam resilience) and regeneration behaviour of carbonised t...
Three different microporous niobia–silica gas separation membranes with an exceptionally low permeab...
This chapter discusses the development of silica membranes for gas separation at higher temperatures...
In this work we compare the hydrothermal stability performance of a Templated Molecular Sieve Silica...
Mesostructured silica SBA-15 materials with different structural parameters, such as pore size, pore...
Network size control was evaluated for microporous membranes derived from triethoxysilane (TRIES) th...
Cobalt silica membranes were fabricated using sol–gel techniques for separation of H2 in a membrane ...