A moving-bed temperature-swing adsorption (MBTSA) process has been evaluated for post-combustion CO2 capture in a natural-gas combined cycle (NGCC) context using Zeolite 13X as adsorbent. The performance of the different sections of the reactor (adsorption, regeneration and heat exchange) were modelled in gPROMS using real equilibrium and kinetic adsorption data and typical heat transfer parameters. As a consequence of the internal heat transfer between the hot adsorbent powder leaving the regenerator with the cold powder entering the regenerator, a low specific heat requirement for regeneration of 2.3 GJth/ton CO2 captured is estimated. When also including the electrical energy needed (also compression of CO2) a total energy penalty of 6.5...
Vacuum, temperature and concentration swing adsorption processes, have been designed to capture 85% ...
This paper presents the novel swing adsorption reactor cluster (SARC) for post combustion CO2 captur...
The swing adsorption reactor cluster is a promising new method for post-combustion CO2 capture using...
In the context of post-combustion CO2 capture, adsorption-based processes are considered a promising...
A mathematical model of a continuous moving-bed temperature-swing adsorption (MBTSA) process for pos...
The present work considers the utilization of a moving bed temperature swing adsorption (MBTSA) proc...
Moving bed temperature swing adsorption (MBTSA) is a promising technology for CO2 capture from flue ...
Due to high regeneration energy demands for amine absorption processes for post-combustion CO2 captu...
The design of temperature swing adsorption (TSA) cycles aimed at recovering the heavy product at hig...
A novel multibed heat-integrated vacuum and temperature swing adsorption process has been designed t...
This paper reports the integration of Electric swing adsorption (ESA) Process in a Natural Gas Combi...
The technology of circulating fluidized beds (CFBs) is applied to temperature swing adsorption (TSA)...
This paper deals with gas separation by adsorption processes. The key objective is to investigate th...
Vacuum, temperature and concentration swing adsorption processes, have been designed to capture 85% ...
This paper presents the novel swing adsorption reactor cluster (SARC) for post combustion CO2 captur...
The swing adsorption reactor cluster is a promising new method for post-combustion CO2 capture using...
In the context of post-combustion CO2 capture, adsorption-based processes are considered a promising...
A mathematical model of a continuous moving-bed temperature-swing adsorption (MBTSA) process for pos...
The present work considers the utilization of a moving bed temperature swing adsorption (MBTSA) proc...
Moving bed temperature swing adsorption (MBTSA) is a promising technology for CO2 capture from flue ...
Due to high regeneration energy demands for amine absorption processes for post-combustion CO2 captu...
The design of temperature swing adsorption (TSA) cycles aimed at recovering the heavy product at hig...
A novel multibed heat-integrated vacuum and temperature swing adsorption process has been designed t...
This paper reports the integration of Electric swing adsorption (ESA) Process in a Natural Gas Combi...
The technology of circulating fluidized beds (CFBs) is applied to temperature swing adsorption (TSA)...
This paper deals with gas separation by adsorption processes. The key objective is to investigate th...
Vacuum, temperature and concentration swing adsorption processes, have been designed to capture 85% ...
This paper presents the novel swing adsorption reactor cluster (SARC) for post combustion CO2 captur...
The swing adsorption reactor cluster is a promising new method for post-combustion CO2 capture using...