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The global increase in CO2 emissions necessitates the development of efficient and sustainable carbon capture technologies. This review explores the integration of membrane-based separation with conventional CO2 capture methods, such as absorption ...
Jia Yen Lai +4 more
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The enzyme Carbonic Anhydrase (CA) can accelerate the absorption rate of CO2 into aqueous solutions by several-fold. It exist in almost all living organisms and catalyses different important processes like CO2 transport, respiration and the acid-base balances.
Fosbøl, Philip Loldrup; id_orcid 0000-0003-1067-2348 +4 more
openaire
Sustainable CO2 management through integrated CO2 capture and conversion
Ke-Xin Zhang +7 more
semanticscholar +1 more source
Ether chain-modified Alkanolguanidine for CO2 capture and subsequent conversion
Capturing CO2 and converting it into valuable chemicals has attracted considerable attention in recent years. Herein, a kind of ether chain-modified alkanolguanidines (ECMAs) was designed and synthesized as a dual functional reagent for carbon dioxide ...
Hai-Yang Hu +3 more
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Electrochemical processes for CO2 mitigation can be broadly categorized into two approaches: CO2 capture via electrochemically generated bases and CO2 conversion through electrochemical reduction.
Jeong Hyun Kim +8 more
doaj +1 more source
Applied Artificial Neural Network for Hydrogen Sulfide Solubility in Natural Gas Purification
Prathana Nimmanterdwong +7 more
doaj +1 more source
The removal of carbon dioxide (CO2) from the atmosphere using direct air capture (DAC) is crucial in achieving the net-zero emissions target and combating global warming.
Esmaeel Eftekharian +6 more
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The increasing concentration of CO2 in the atmosphere entails casualties, mainly global warming issues. For quite a long time, considerable efforts have been dedicated to suppressing this issue. Amongst the proposed solutions, direct air capture (DAC) is deemed to be one of the most promising technologies in the future for mitigating the challenges ...
openaire +1 more source
CO2 capture by ferriferrohydrosol
Commercial product ferriferrohydrosol (FFH), which is a suspension of iron oxides/hydroxides, is found applicable for the purification of wastewater to absorb CO2 from concentrated exhaust gases. DLS, FTIR, and Raman-spectroscopy studies show that FFH consists mainly of iron-containing nanoparticles which are a mixture of Fe2+ and Fe3+ oxides and ...
I. Bychko +7 more
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Captage et stockage du CO 2 La neutralité carbone en 2050 ne sera atteignable que si nous mobilisons tous les moyens possibles. Remettre le carbone dans le sous-sol d'où il a été extrait est un moyen efficace pour réduire les émissions résiduelles incompressibles de CO 2 et même pour retirer du CO 2 de l'atmosphère, comme le souligne le GIEC.
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