The concentration of CO₂ in the atmosphere is increasing rapidly. CO₂ emissions may have an impact on global climate change. Effective CO₂ emission abatement strategies such as carbon capture and storage (CCS) are required to combat this trend. Compared with pre-combustion carbon capture and oxy-fuel carbon capture approaches, post-combustion CO₂ capture (PCC) using solvent process is one of the most mature carbon capture technologies. There are two main barriers for the PCC process using solvent to be commercially deployed: (a) high capital cost; (b) high thermal efficiency penalty due to solvent regeneration. Applying process intensification (PI) technology into PCC with solvent process has the potential to significantly reduce capital co...
AbstractAmine based CO2 scrubbing processes have been patented since 1930 but very few process impro...
Application of process intensification (PI) technologies such as rotating packed beds (RPBs) to repl...
AbstractIn this work, a perspective is given on the development lines for CO2 post-combustion captur...
The concentration of CO₂ in the atmosphere is increasing rapidly. CO₂ emissions may have an impact o...
Global concentration of CO2 in the atmosphere is increasing rapidly. CO2 emissions have an impact o...
Anthropogenic climate change due to, among other causes, unhindered CO2 emissions is a major concern...
Solvent-based carbon capture is the most commercially-ready technology for economically and sustaina...
© 2019 Elsevier Ltd Solvent-based post-combustion carbon capture (PCC) with packed column is the mos...
Process intensification (PI) has the potential to significantly reduce capital and operating costs i...
Carbon dioxide is a greenhouse gas and its emissions contribute to climate change. Fossil-fuel-fired...
Solvent-based post-combustion CO2 capture (PCC) appears to be the most effective choice to overcome ...
AbstractProcess intensification (PI) has the potential to significantly reduce capital and operating...
Solvent-based post-combustion carbon capture (PCC) process is widely viewed as the most viable optio...
This paper studied mass transfer in rotating packed bed (RPB) which has the potential to significant...
AbstractAmine based CO2 scrubbing processes have been patented since 1930 but very few process impro...
Application of process intensification (PI) technologies such as rotating packed beds (RPBs) to repl...
AbstractIn this work, a perspective is given on the development lines for CO2 post-combustion captur...
The concentration of CO₂ in the atmosphere is increasing rapidly. CO₂ emissions may have an impact o...
Global concentration of CO2 in the atmosphere is increasing rapidly. CO2 emissions have an impact o...
Anthropogenic climate change due to, among other causes, unhindered CO2 emissions is a major concern...
Solvent-based carbon capture is the most commercially-ready technology for economically and sustaina...
© 2019 Elsevier Ltd Solvent-based post-combustion carbon capture (PCC) with packed column is the mos...
Process intensification (PI) has the potential to significantly reduce capital and operating costs i...
Carbon dioxide is a greenhouse gas and its emissions contribute to climate change. Fossil-fuel-fired...
Solvent-based post-combustion CO2 capture (PCC) appears to be the most effective choice to overcome ...
AbstractProcess intensification (PI) has the potential to significantly reduce capital and operating...
Solvent-based post-combustion carbon capture (PCC) process is widely viewed as the most viable optio...
This paper studied mass transfer in rotating packed bed (RPB) which has the potential to significant...
AbstractAmine based CO2 scrubbing processes have been patented since 1930 but very few process impro...
Application of process intensification (PI) technologies such as rotating packed beds (RPBs) to repl...
AbstractIn this work, a perspective is given on the development lines for CO2 post-combustion captur...