1 |
Demanding Problems of Amine Treating of Natural Gas: Analysis and Ways of Solution Golubeva IA, Dashkina AV, Shulga IV Petroleum Chemistry, 60(1), 45, 2020 |
2 |
Polyamine-promoted aqueous DEEA for CO2 capture: An experimental analysis Verma A, Kumar P, Bindwal A, Paul S Indian Journal of Chemical Technology, 26(5), 411, 2019 |
3 |
Thermodynamic characterisation of aqueous alkanolamine and amine solutions for acid gas processing by transferable molecular models Pereira LMC, Llovell F, Vega LF Applied Energy, 222, 687, 2018 |
4 |
Experimental measurements and modelling of carbon dioxide solubility in aqueous AMP/MDEA and Piperazine/MDEA blends Suleman H, Maulud AS, Man Z Fluid Phase Equilibria, 463, 142, 2018 |
5 |
Applicability of enhancement factor models for CO2 absorption into aqueous MEA solutions Putta KR, Tobiesen FA, Svendsen HF, Knuutila HK Applied Energy, 206, 765, 2017 |
6 |
A comparative study of different amine-based solvents for CO2-capture using the rate-based approach Huser N, Schmitz O, Kenig EY Chemical Engineering Science, 157, 221, 2017 |
7 |
Selection of components for formulation of amine blends for post combustion CO2 capture based on the side chain structure of primary, secondary and tertiary amines Narku-Tetteh J, Muchan P, Saiwan C, Supap T, Idem R Chemical Engineering Science, 170, 542, 2017 |
8 |
New sulfur-, nitrogen-, and boron-containing multifunctional alkylphenolate additives for motor oils Mamedova AK, Farzaliev VM, Kyazim-Zade AK Petroleum Chemistry, 57(8), 718, 2017 |
9 |
Effect of alkanol chain length of primary alkanolamines and alkyl chain length of secondary and tertiary alkanolamines on their CO2 capture activities Narku-Tetteh J, Muchan P, Idem R Separation and Purification Technology, 187, 453, 2017 |
10 |
Modelling the phase and chemical equilibria of aqueous solutions of alkanolamines and carbon dioxide using the SAFT-gamma SW group contribution approach Chremos A, Forte E, Papaioannou V, Galindo A, Jackson G, Adjiman CS Fluid Phase Equilibria, 407, 280, 2016 |