AbstractBy using 13C Nuclear Magnetic Resonance (NMR) spectroscopy, direct qualitative and quantitative information on the species formed during the absorption and desorption of CO2 in aqueous amine solvents can be acquired. In this paper, an overview of the state of the art of 13C NMR studies performed on amine-CO2-H2O system, with a specific focus on the methods used to perform quantitative analyses, is presented. It is concluded that, for possible improvements of the efficiency of cyclic CO2 capture processes, NMR spectroscopy gives important contributions in investigating the chemical reactions occurring in amine-CO2-H2O systems
Abstract15N NMR spectroscopy is a useful tool for amine reactivity characterization since it can pro...
AbstractQualitative and quantitative 13C NMR studies were performed on 30 wt % aqueous solution of 2...
The CO2 uptake by single 2-amino-2-methyl-1-propanol (AMP) and its blends with 2-(ethylamino)ethano...
AbstractBy using 13C Nuclear Magnetic Resonance (NMR) spectroscopy, direct qualitative and quantitat...
AbstractQuantitative 13C NMR spectroscopy was used to study the reaction of CO2 with aqueous amines....
AbstractQualitative NMR spectroscopy was used to study the species formed during CO2 absorption in a...
Tertiary and sterically hindered amines have been chosen as potential candidate absorbents, recommen...
AbstractThe present research work is centered in the use of nuclear magnetic resonance technique to ...
AbstractWe have studied the formation rates of chemical species such as CO3/HCO3, amine/protonated a...
AbstractThe 13C NMR techniques were selected to investigate the ion speciation in both DEAB and IPAB...
AbstractChemical reactions associated with the absorption of CO2 into aqueous solutions of blends of...
AbstractQualitative 13C-NMR experiments were performed at 298 K and for different loadings to invest...
2-(Diethylamino)ethanol (DEEA) and 3-(Methylamino) propylamine (MAPA) in combination may represent a...
Aqueous 3-(Methylamino)propylamine (MAPA) in blend with 2-(Diethylamino)ethanol (DEEA) and other ter...
Carbon dioxide capture is an urgently needed pathway to mitigation of climate change, yet the amine-...
Abstract15N NMR spectroscopy is a useful tool for amine reactivity characterization since it can pro...
AbstractQualitative and quantitative 13C NMR studies were performed on 30 wt % aqueous solution of 2...
The CO2 uptake by single 2-amino-2-methyl-1-propanol (AMP) and its blends with 2-(ethylamino)ethano...
AbstractBy using 13C Nuclear Magnetic Resonance (NMR) spectroscopy, direct qualitative and quantitat...
AbstractQuantitative 13C NMR spectroscopy was used to study the reaction of CO2 with aqueous amines....
AbstractQualitative NMR spectroscopy was used to study the species formed during CO2 absorption in a...
Tertiary and sterically hindered amines have been chosen as potential candidate absorbents, recommen...
AbstractThe present research work is centered in the use of nuclear magnetic resonance technique to ...
AbstractWe have studied the formation rates of chemical species such as CO3/HCO3, amine/protonated a...
AbstractThe 13C NMR techniques were selected to investigate the ion speciation in both DEAB and IPAB...
AbstractChemical reactions associated with the absorption of CO2 into aqueous solutions of blends of...
AbstractQualitative 13C-NMR experiments were performed at 298 K and for different loadings to invest...
2-(Diethylamino)ethanol (DEEA) and 3-(Methylamino) propylamine (MAPA) in combination may represent a...
Aqueous 3-(Methylamino)propylamine (MAPA) in blend with 2-(Diethylamino)ethanol (DEEA) and other ter...
Carbon dioxide capture is an urgently needed pathway to mitigation of climate change, yet the amine-...
Abstract15N NMR spectroscopy is a useful tool for amine reactivity characterization since it can pro...
AbstractQualitative and quantitative 13C NMR studies were performed on 30 wt % aqueous solution of 2...
The CO2 uptake by single 2-amino-2-methyl-1-propanol (AMP) and its blends with 2-(ethylamino)ethano...