Research in solid-gas heterogeneous catalytic processes is typically aimed toward optimization of catalyst composition to achieve a higher conversion and, especially, a higher selectivity. However, even with the most selective catalysts, an upper limit is found: Above a certain temperature, gas-phase reactions become important and their effects cannot be neglected. Here, we apply a microwave field to a catalyst-support ensemble capable of direct microwave heating (MWH). We have taken extra precautions to ensure that (i) the solid phase is free from significant hot spots and (ii) an accurate estimation of both solid and gas temperatures is obtained. MWH allows operating with a catalyst that is significantly hotter than the surrounding gas, a...
Microwave (MW) heating has been applied to increase the selectivity to propylene in the oxidative de...
The present review deals with the recent achievements and impressive potential applications of micro...
Portable reforming technology for the production of synthesis gas (CO & H2) from hydrocarbons has th...
Research in solid-gas heterogeneous catalytic processes is typically aimed toward optimization of ca...
Due to the quest for more efficient production processes both from the energy and selectivity point ...
This article belongs to the Special Issue Microwave-Assisted Catalysis.Microwave-assisted heterogene...
Microwave-assisted gas-phase conversion on structured catalysts is emerging as a promising process i...
Since the late 1980s, the scientific community has been attracted to microwave energy as an alternat...
Microwave heating (MWH) transforms energy from an electromagnetic wave to heat. In contrast to conve...
Microwave-assisted catalysis is an emerging route for reactor modularization and decarbonization of ...
Three heterogeneously catalysed reactions have been investigated using both conventional and microwa...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
Stranded gas is a raw gas mixture of volatile hydrocarbons where the main composition is methane. Th...
Microwave (MW) heating has been applied to increase the selectivity to propylene in the oxidative de...
The present review deals with the recent achievements and impressive potential applications of micro...
Portable reforming technology for the production of synthesis gas (CO & H2) from hydrocarbons has th...
Research in solid-gas heterogeneous catalytic processes is typically aimed toward optimization of ca...
Due to the quest for more efficient production processes both from the energy and selectivity point ...
This article belongs to the Special Issue Microwave-Assisted Catalysis.Microwave-assisted heterogene...
Microwave-assisted gas-phase conversion on structured catalysts is emerging as a promising process i...
Since the late 1980s, the scientific community has been attracted to microwave energy as an alternat...
Microwave heating (MWH) transforms energy from an electromagnetic wave to heat. In contrast to conve...
Microwave-assisted catalysis is an emerging route for reactor modularization and decarbonization of ...
Three heterogeneously catalysed reactions have been investigated using both conventional and microwa...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
Stranded gas is a raw gas mixture of volatile hydrocarbons where the main composition is methane. Th...
Microwave (MW) heating has been applied to increase the selectivity to propylene in the oxidative de...
The present review deals with the recent achievements and impressive potential applications of micro...
Portable reforming technology for the production of synthesis gas (CO & H2) from hydrocarbons has th...