This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of water to boost the performance of the one-step DME synthesis via CO2 hydrogenation at process scale. Given the higher efficiency in converting the feedstock, the membrane reactor allows for a remarkable decrease in the main cost drivers of the process, i.e., the catalyst mass and the H2 feed flow, by ca. 39% and 64%, respectively. Furthermore, the MR-assisted process requires 46% less utilities than the conventional process, especially in terms of cooling water and refrigerant, with a corresponding decrease in environmental impact (i.e., 25% less CO2 emissions). Both the conventional and MR-assisted plants were found effective for the mitigati...
Hydrogen has significant potential as a future carbon-free energy carrier. Given that the vast major...
The production of dimethyl carbonate (DMC) caught more interest in the past decades due to its versa...
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...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
The direct hydrogenation of CO2 to dimethyl ether (DME) is a promising technology for CO2 valorisati...
The conceptual design and engineering of an integrated catalytic reactor requires a thorough underst...
Netherlands Process Symposium (NPS-17) - Delft University of Technology - 04-05/04/2022 - poste
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
The production of dimethyl carbonate (DMC) caught more interest in the past decades due to its versa...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
Hydrogen has significant potential as a future carbon-free energy carrier. Given that the vast major...
The production of dimethyl carbonate (DMC) caught more interest in the past decades due to its versa...
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...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
The direct hydrogenation of CO2 to dimethyl ether (DME) is a promising technology for CO2 valorisati...
The conceptual design and engineering of an integrated catalytic reactor requires a thorough underst...
Netherlands Process Symposium (NPS-17) - Delft University of Technology - 04-05/04/2022 - poste
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
The production of dimethyl carbonate (DMC) caught more interest in the past decades due to its versa...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
Hydrogen has significant potential as a future carbon-free energy carrier. Given that the vast major...
The production of dimethyl carbonate (DMC) caught more interest in the past decades due to its versa...
The direct hydrogenation of CO2 to dimethyl ether (DME) is a promising technology for CO2 valorisati...