The paper evaluates the performance of an adsorption-based technology for CO2 capture directly from the air at the industrial scale. The approach is based on detailed mass and energy balance dynamic modeling of the vacuum temperature swing adsorption (VTSA) process in Aspen Adsorption software. The first step of the approach aims to validate the modeling thanks to published experimental data for a lab-scale bed module in terms of mass transfer and energy performance on a packed bed using amine-functionalized material. A parametric study on the main operating conditions, i.e., air velocity, air relative moisture, air temperature, and CO2 capture rate, is undertaken to assess the global performance and energy consumption. A method of up-scali...
A novel multibed heat-integrated vacuum and temperature swing adsorption process has been designed t...
This paper provides an insight on state-of-the-art, limits and potentials of pressure swing adsorpti...
Direct air capture (DAC) has shown high potential for climate change mitigation by removing CO2 from...
peer reviewedThis paper presents a fixed bed reactor system to capture CO2 from ambient air via Tem...
The present work considers the utilization of a moving bed temperature swing adsorption (MBTSA) proc...
In this work, direct air capture (DAC) via adsorption is studied through the design and analysis of ...
© 2015 Dr. Augustine NtiamoahMuch of the consumer energy needs of the world are met from the combust...
In this study, direct air capture performance of polymeric adsorbent was studied by determining CO2-...
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...
This paper deals with gas separation by adsorption processes. The key objective is to investigate th...
editorial reviewedThis study describes sensitivity studies of a kg-scale fixed bed reactor model via...
The design of temperature swing adsorption (TSA) cycles aimed at recovering the heavy product at hig...
The technology of circulating fluidized beds (CFBs) is applied to temperature swing adsorption (TSA)...
AbstractWe have examined the capture of carbon dioxide from flue gas by adsorption on solid sorbents...
A novel multibed heat-integrated vacuum and temperature swing adsorption process has been designed t...
This paper provides an insight on state-of-the-art, limits and potentials of pressure swing adsorpti...
Direct air capture (DAC) has shown high potential for climate change mitigation by removing CO2 from...
peer reviewedThis paper presents a fixed bed reactor system to capture CO2 from ambient air via Tem...
The present work considers the utilization of a moving bed temperature swing adsorption (MBTSA) proc...
In this work, direct air capture (DAC) via adsorption is studied through the design and analysis of ...
© 2015 Dr. Augustine NtiamoahMuch of the consumer energy needs of the world are met from the combust...
In this study, direct air capture performance of polymeric adsorbent was studied by determining CO2-...
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...
This paper deals with gas separation by adsorption processes. The key objective is to investigate th...
editorial reviewedThis study describes sensitivity studies of a kg-scale fixed bed reactor model via...
The design of temperature swing adsorption (TSA) cycles aimed at recovering the heavy product at hig...
The technology of circulating fluidized beds (CFBs) is applied to temperature swing adsorption (TSA)...
AbstractWe have examined the capture of carbon dioxide from flue gas by adsorption on solid sorbents...
A novel multibed heat-integrated vacuum and temperature swing adsorption process has been designed t...
This paper provides an insight on state-of-the-art, limits and potentials of pressure swing adsorpti...
Direct air capture (DAC) has shown high potential for climate change mitigation by removing CO2 from...