We propose design specifications and operating conditions for an absorber in an ammonia-based, post-combustion carbon capture process. We used a rate-based multistage column model to simulate a baseline-case scenario involving an absorber installed at a large-scale CO2 emission source. The goal was to exploit the chemistry of the NH3-CO2-H2O system to evaluate the performance of the absorber with respect to carbon capture, ammonia slip, and the height of the absorber. Thus, we identified as the two important prerequisites for absorber design: (1) that staged absorption is used and (2) that the rich CO2 loading does not exceed 0.5
International audienceAqueous ammonia is well known to be a substitute of MEA solvent for absorbing ...
A rate-based model for the absorption of CO2 with aqueous ammonia solutions has been developed on th...
Power generation from fossil fuel-fired power plants is the largest single source of CO 2 emissions....
We propose design specifications and operating conditions for an absorber in an ammonia-based, post-...
AbstractCarbon dioxide capture using aqueous ammonia is a post-combustion technology that has shown ...
Due to the continued increasing levels of CO2 emissions that is contributing to climate change, CO2 ...
Carbon capture and storage is vital to facilitating the transition from our current fossil fuel-base...
AbstractA rigorous rate-based model for the aqueous ammonia (NH3) based CO2 absorption in a packed c...
Post-combustion CO2 capture using aqueous ammonia offers advantages over the conventional amines sol...
AbstractThe objective of this paper is to obtain insight into the potential performance of the ammon...
It is well known that CO2 capture and re-use is one of the main challenges to be pursued in order to...
Post-combustion capture of carbon dioxide is one of the measures to reduce emissions of carbon dioxi...
In this study, we investigate the effects of a wide range of carbon dioxide (CO2) concentrations in ...
AbstractAqueous ammonia can be used to capture CO2 from flue gas of coal-fired power plant with quic...
In this work, we have developed advanced process configurations for solvent-based CO2 capture proces...
International audienceAqueous ammonia is well known to be a substitute of MEA solvent for absorbing ...
A rate-based model for the absorption of CO2 with aqueous ammonia solutions has been developed on th...
Power generation from fossil fuel-fired power plants is the largest single source of CO 2 emissions....
We propose design specifications and operating conditions for an absorber in an ammonia-based, post-...
AbstractCarbon dioxide capture using aqueous ammonia is a post-combustion technology that has shown ...
Due to the continued increasing levels of CO2 emissions that is contributing to climate change, CO2 ...
Carbon capture and storage is vital to facilitating the transition from our current fossil fuel-base...
AbstractA rigorous rate-based model for the aqueous ammonia (NH3) based CO2 absorption in a packed c...
Post-combustion CO2 capture using aqueous ammonia offers advantages over the conventional amines sol...
AbstractThe objective of this paper is to obtain insight into the potential performance of the ammon...
It is well known that CO2 capture and re-use is one of the main challenges to be pursued in order to...
Post-combustion capture of carbon dioxide is one of the measures to reduce emissions of carbon dioxi...
In this study, we investigate the effects of a wide range of carbon dioxide (CO2) concentrations in ...
AbstractAqueous ammonia can be used to capture CO2 from flue gas of coal-fired power plant with quic...
In this work, we have developed advanced process configurations for solvent-based CO2 capture proces...
International audienceAqueous ammonia is well known to be a substitute of MEA solvent for absorbing ...
A rate-based model for the absorption of CO2 with aqueous ammonia solutions has been developed on th...
Power generation from fossil fuel-fired power plants is the largest single source of CO 2 emissions....