The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endothermic reactions that operate above 700 °C in chemically aggressive environments, where low heat and mass transfer rates limit reaction yield. FeCrAl two- and three-dimensional structured networks - monoliths, foams, and fibers - maximize mass transfer rates, while their remarkable thermal conductivity minimizes hot spots and thermal gradients. Another advantage of the open FeCrAl structure is the low pressure drop due to the high void fraction and regularity of the internal path. The surface Al2O3 layer, formed after an initial thermal oxidation, supports a wide range of metal and metal oxide active phases. The aluminum oxide that adheres to ...
Iron-chromium-aluminum alloys containing 15-20 wt.% Cr and 4-6 wt.% Al have shown excellent corrosio...
The corrosive environment in biomass- and waste-fired boilers has been known for several years. The ...
FeCrAl alloys are much used at high temperatures because the formation of a dense and slow-growing a...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
none8siThe iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
Catalytic devices play a very important role to drastically reduce the noxious contaminants released...
Ferritic stainless steel containing more than 7 wt. % of Al represents an interesting material for t...
The FeCrAl alloys owe their low oxidation rate to the formation of a slow growing alpha-aluminium ox...
High temperature corrosion is one major challenge for biomass gasification materials. FeCrAl alloys ...
The choice of a metal alloy for supporting catalytic converter bodies depends on the mechanical, the...
Iron-chromium-aluminum alloys containing 15-20 wt.% Cr and 4-6 wt.% Al have shown excellent corrosio...
The corrosive environment in biomass- and waste-fired boilers has been known for several years. The ...
FeCrAl alloys are much used at high temperatures because the formation of a dense and slow-growing a...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
none8siThe iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
Catalytic devices play a very important role to drastically reduce the noxious contaminants released...
Ferritic stainless steel containing more than 7 wt. % of Al represents an interesting material for t...
The FeCrAl alloys owe their low oxidation rate to the formation of a slow growing alpha-aluminium ox...
High temperature corrosion is one major challenge for biomass gasification materials. FeCrAl alloys ...
The choice of a metal alloy for supporting catalytic converter bodies depends on the mechanical, the...
Iron-chromium-aluminum alloys containing 15-20 wt.% Cr and 4-6 wt.% Al have shown excellent corrosio...
The corrosive environment in biomass- and waste-fired boilers has been known for several years. The ...
FeCrAl alloys are much used at high temperatures because the formation of a dense and slow-growing a...