A review of process intensified CO2 capture in RPB for sustainability and contribution to industrial net zero

C Shukla, P Mishra, SK Dash - Frontiers in Energy Research, 2023 - frontiersin.org
Carbon dioxide (CO2), a significant greenhouse gas released from power plants and
industries, substantially impacts climate change; minimizing it and achieving carbon net zero …

Hydrodynamic characteristics and mass transfer performance of rotating packed bed for CO2 removal by chemical absorption: A review

W Zhang, P Xie, Y Li, L Teng, J Zhu - Journal of Natural Gas Science and …, 2020 - Elsevier
Carbon dioxide (CO 2) removal is an important process in natural gas processing. For
offshore natural gas, due to the space limitations of offshore platforms, the volume …

Carbon dioxide absorption and desorption in aqueous monoethanolamine solutions in a rotating packed bed

MS Jassim, G Rochelle, D Eimer… - Industrial & engineering …, 2007 - ACS Publications
The absorption and desorption of carbon dioxide in aqueous monoethanolamine (MEA) was
measured in a rotating packed bed of size 398 mm outside diameter, 156 mm inside …

Optimizing economic feasibility of CO2 capture processes with rotating packed bed (RPB): Strategies for scale and modularization

H Jung, N Park, JH Lee - Journal of Cleaner Production, 2024 - Elsevier
Abstract Rotating Packed Bed (RPB) technology is increasingly recognized in the field of
carbon capture for its potential to broaden application scopes and significantly reduce …

A mesoscale 3D CFD analysis of the liquid flow in a rotating packed bed

P Xie, X Lu, H Ding, X Yang, D Ingham, L Ma… - Chemical Engineering …, 2019 - Elsevier
Rotating packed beds (RPBs), as a type of process intensification technology, are promising
to be employed as high-efficiency CO 2 absorbers. However, the detailed understanding of …

Process modelling and analysis of intensified CO2 capture using monoethanolamine (MEA) in rotating packed bed absorber

TN Borhani, E Oko, M Wang - Journal of Cleaner Production, 2018 - Elsevier
Rotating packed bed (RPB) absorber using monoethanolamine (MEA) as the solvent to
capture CO 2 is modelled at steady state condition in this study according to the first …

[HTML][HTML] Process analysis of intensified absorber for post-combustion CO2 capture through modelling and simulation

AS Joel, M Wang, C Ramshaw, E Oko - International Journal of …, 2014 - Elsevier
Process intensification (PI) has the potential to significantly reduce capital and operating
costs in post-combustion CO 2 capture using monoethanolamine (MEA) solvent for power …

Modeling, simulation and optimization of the rotating packed bed (RPB) absorber and stripper for MEA-based carbon capture

D Im, H Jung, JH Lee - Computers & Chemical Engineering, 2020 - Elsevier
Despite rising concern with climate change, carbon capture is yet to be implemented widely
in the industry due to its size and cost. The rotating packed bed (RPB), a high gravity …

Modelling, simulation and analysis of intensified regenerator for solvent based carbon capture using rotating packed bed technology

AS Joel, M Wang, C Ramshaw, E Oko - Applied Energy, 2017 - Elsevier
Intensified regenerator/stripper using rotating packed bed (RPB) for regeneration of rich-
MEA solvent in post-combustion CO 2 capture with chemical absorption process was …

Evaluating the efficiency and cost-effectiveness of RPB-based CO2 capture: A comprehensive approach to simultaneous design and operating condition optimization

H Jung, N Park, JH Lee - Applied Energy, 2024 - Elsevier
Despite ongoing global initiatives to reduce CO 2 emissions, implementing large-scale CO 2
capture using amine solvents is fraught with economic uncertainties and technical hurdles …