Detailed Record



Enhancement of CO2 capture operation in oscillatory baffled reactor


Abstract This article reports the first successful CO2 capture in a continuous oscillatory baffled reactor. Many operation variables and the effect of the constant baffle size and distance on CO2 capture were evaluated. The variables were the gas flow rate, solvent types (water, Monoethanolamine, Diethanolamine, and Triethylamine), and the existence of oscillation and baffling at constant residence times. Oscillations probably contributed to the increased growth in CO2 capture in the oscillating flow reactor. Furthermore, the mixing intensity resulted in a highly efficient and stable CO2 capture. In the results, oscillating flow reactors were proven to act as liquid–gas contactors capable of capturing CO2.
Authors Ehsan Heidaryan University of Wyoming , Ashkan Gouran ORCID , Kamellia Nejati , Babak Aghel ORCID
Journal Info Elsevier BV | Separation and Purification Technology , vol: 324 , pages: 124536 - 124536
Publication Date 11/1/2023
ISSN 1383-5866
TypeKeyword Image article
Open Access closed Closed Access
DOI https://doi.org/10.1016/j.seppur.2023.124536
KeywordsKeyword Image CO2 Capture Technology (Score: 0.606799) , Carbon Dioxide Capture (Score: 0.598292) , CO2 Separation (Score: 0.520169)