The identification of improved carbon dioxide (CO2) capture solvents remains a challenge due to the vast number of potentially-suitable molecules. We propose an optimization-based computer-aided molecular design (CAMD) method to identify and select, from hundreds of thousands of possibilities, a few solvents of optimum performance for CO2 chemisorption processes, as measured by a comprehensive set of criteria. The first stage of the approach involves a fast screening stage where solvent structures are evaluated based on the simultaneous consideration of important pure component properties reflecting thermodynamic, kinetic, and sustainability behaviour. The impact of model uncertainty is considered through a systematic method that employs mu...
Computer-Aided Molecular Design (CAMD) has been put forward as a powerful and systematic technique t...
International audienceAbstract Carbon capture and storage technologies are projected to increasingly...
The increase in concentrations of greenhouse gases is responsible for global warming over the past f...
The identification of improved carbon dioxide (CO2) capture solvents remains a challenge due to the ...
The identification of improved carbon dioxide (CO2) capture solvents remains a challenge due to the ...
AbstractThis paper discusses using computational molecular modeling and process optimization to sele...
Solvent selection and design are imperative in the CO2 capture process. The efficiency and the overa...
The cost of currently available technologies for CO2 capture should be further reduced to allow for ...
AbstractA method for the integrated process and solvent design of absorption separation systems is p...
The reduction of CO2 emissions has become a challenge due to rapid economic growth all over the worl...
After a brief revision of the literature, this work develops a computer-aided molecular design proce...
The cost of currently available technologies for CO2 capture should be further reduced to allow for ...
AbstractThis paper discusses using computational molecular modeling and process optimization to sele...
Development of alternative CO2 capture, utilization and storage (CCUS) have become important for sus...
Absorption with aqueous amine solvents is at present the most viable technology for CO2 capture. Whi...
Computer-Aided Molecular Design (CAMD) has been put forward as a powerful and systematic technique t...
International audienceAbstract Carbon capture and storage technologies are projected to increasingly...
The increase in concentrations of greenhouse gases is responsible for global warming over the past f...
The identification of improved carbon dioxide (CO2) capture solvents remains a challenge due to the ...
The identification of improved carbon dioxide (CO2) capture solvents remains a challenge due to the ...
AbstractThis paper discusses using computational molecular modeling and process optimization to sele...
Solvent selection and design are imperative in the CO2 capture process. The efficiency and the overa...
The cost of currently available technologies for CO2 capture should be further reduced to allow for ...
AbstractA method for the integrated process and solvent design of absorption separation systems is p...
The reduction of CO2 emissions has become a challenge due to rapid economic growth all over the worl...
After a brief revision of the literature, this work develops a computer-aided molecular design proce...
The cost of currently available technologies for CO2 capture should be further reduced to allow for ...
AbstractThis paper discusses using computational molecular modeling and process optimization to sele...
Development of alternative CO2 capture, utilization and storage (CCUS) have become important for sus...
Absorption with aqueous amine solvents is at present the most viable technology for CO2 capture. Whi...
Computer-Aided Molecular Design (CAMD) has been put forward as a powerful and systematic technique t...
International audienceAbstract Carbon capture and storage technologies are projected to increasingly...
The increase in concentrations of greenhouse gases is responsible for global warming over the past f...