AbstractThe main objective of this study is to investigate the feasibility and costs of ionic liquid (IL)-based CO2 capture systems at pulverized coal-fired (PC) power plants. The IL selected for this assessment is trihexyl- (tetradecyl)phosphonium 2-cyanopyrrolide ([P66614][2-CNpyr]), achieving a 1:1 and reversible chemical reaction between [2-CNpyr]− and CO2. A multi-stage equilibrium-based modeling framework is established to simulate the adiabatic absorption process, whereas a single-stage flash drum in equilibrium is employed for the stripping process. The performance model is linked to an engineering-economic model that estimates the capital cost, annual operating and maintenance (O&M) costs, and total levelized annual cost. The techn...
Ionic liquid (IL)-amine hybrid solvents have been experimentally proved to be effective for CO2 capt...
In this paper, three of the leading options for large scale CO2 capture are reviewed from a technica...
The non-volatility, structure-tunability, and high CO2 uptake capacity render ionic liquids (ILs) th...
AbstractThe main objective of this study is to investigate the feasibility and costs of ionic liquid...
This study develops an integrated technical and economic modeling framework to investigate the feasi...
The [hmim][Tf2N] ionic liquid is considered in this work to develop a model in Aspen Plus® capturin...
The recent advancement in efficient and recoverable CO2 capture solvents has been stimulated by the ...
Using the ionic liquid [emim][Tf2N] as a physical solvent, it was found by aspen plus simulation tha...
H2 production processes from steam methane reforming and combined cycle power plants require carbon ...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
Novel technologies that decrease the level of CO2 in our atmosphere are crucial for minimizing the p...
Oxy-fuel combustion technology is an effective way to reduce CO2 emissions. An ionic liquid [emim][T...
Carbon Capture and Utilisation (CCU) is seen globally as one of the available technologies that can ...
Post-combustion processes based on ionic liquids (ILs) and membrane contactors are attractive altern...
Aspen Plus v.8.8 was used to perform techno-economic analysis (TEA) of the CO2 capture process in pr...
Ionic liquid (IL)-amine hybrid solvents have been experimentally proved to be effective for CO2 capt...
In this paper, three of the leading options for large scale CO2 capture are reviewed from a technica...
The non-volatility, structure-tunability, and high CO2 uptake capacity render ionic liquids (ILs) th...
AbstractThe main objective of this study is to investigate the feasibility and costs of ionic liquid...
This study develops an integrated technical and economic modeling framework to investigate the feasi...
The [hmim][Tf2N] ionic liquid is considered in this work to develop a model in Aspen Plus® capturin...
The recent advancement in efficient and recoverable CO2 capture solvents has been stimulated by the ...
Using the ionic liquid [emim][Tf2N] as a physical solvent, it was found by aspen plus simulation tha...
H2 production processes from steam methane reforming and combined cycle power plants require carbon ...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
Novel technologies that decrease the level of CO2 in our atmosphere are crucial for minimizing the p...
Oxy-fuel combustion technology is an effective way to reduce CO2 emissions. An ionic liquid [emim][T...
Carbon Capture and Utilisation (CCU) is seen globally as one of the available technologies that can ...
Post-combustion processes based on ionic liquids (ILs) and membrane contactors are attractive altern...
Aspen Plus v.8.8 was used to perform techno-economic analysis (TEA) of the CO2 capture process in pr...
Ionic liquid (IL)-amine hybrid solvents have been experimentally proved to be effective for CO2 capt...
In this paper, three of the leading options for large scale CO2 capture are reviewed from a technica...
The non-volatility, structure-tunability, and high CO2 uptake capacity render ionic liquids (ILs) th...