Separation enhanced reaction processes are promising process intensification strategies for carbon dioxide utilisation. In recent years, major improvements have been made in adsorption and membrane technology for the direct production of methanol and dimethyl ether from carbon dioxide rich feedstock and hydrogen. In situ water removal results in high single-pass conversions, thereby circumventing the disadvantages of conventional routes, such as the low carbon efficiency, energy intensive downstream separation and large recycles. In situ water removal by adsorption results in extremely high single-pass conversion and yield, especially in direct DME production. Membrane reactors allow for high single-pass conversion and yield, especially for...
The direct synthesis of dimethyl ether (DME) from biomass-derived syngas is a topic of great interes...
PtX technologies are one major building block of the future energy system based on renewables source...
A thermodynamic, model-based, study was carried out to assess the relative performance of methanol a...
Separation enhanced reaction processes are promising process intensification strategies for carbon d...
Dimethyl ether is one of the most promising alternative fuels under consideration worldwide. Both th...
The direct hydrogenation of CO2 to dimethyl ether (DME) is a promising technology for CO2 valorisati...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
The conceptual design and engineering of an integrated catalytic reactor requires a thorough underst...
The direct synthesis of dimethyl ether (DME) on bifunctional catalysts is highly attractive for valo...
An adiabatic tubular fixed bed reactor with and without a membrane was modeled and simulated to stud...
Methanol is currently considered one of the most useful chemical products and is a promising buildin...
In this work, two ZSM-5 type zeolite supported membranes were used as catalytic membrane reactors fo...
Developing a laboratory scale or pilot scale chemical process into industrial scale is not trivial. ...
The direct synthesis of dimethyl ether (DME) from biomass-derived syngas is a topic of great interes...
PtX technologies are one major building block of the future energy system based on renewables source...
A thermodynamic, model-based, study was carried out to assess the relative performance of methanol a...
Separation enhanced reaction processes are promising process intensification strategies for carbon d...
Dimethyl ether is one of the most promising alternative fuels under consideration worldwide. Both th...
The direct hydrogenation of CO2 to dimethyl ether (DME) is a promising technology for CO2 valorisati...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
The conceptual design and engineering of an integrated catalytic reactor requires a thorough underst...
The direct synthesis of dimethyl ether (DME) on bifunctional catalysts is highly attractive for valo...
An adiabatic tubular fixed bed reactor with and without a membrane was modeled and simulated to stud...
Methanol is currently considered one of the most useful chemical products and is a promising buildin...
In this work, two ZSM-5 type zeolite supported membranes were used as catalytic membrane reactors fo...
Developing a laboratory scale or pilot scale chemical process into industrial scale is not trivial. ...
The direct synthesis of dimethyl ether (DME) from biomass-derived syngas is a topic of great interes...
PtX technologies are one major building block of the future energy system based on renewables source...
A thermodynamic, model-based, study was carried out to assess the relative performance of methanol a...