Absorption rates of carbon dioxide in amines in hydrophilic and hydrophobic solvents

被引:31
作者
Rayer, Aravind V. [1 ]
Mobley, Paul D. [1 ]
Soukri, Mustapha [1 ]
Gohndrone, Thomas R. [1 ]
Tanthana, Jak [1 ]
Zhou, Jim [1 ]
Lail, Marty [1 ]
机构
[1] RTI Int, 3040 Cornwallis Rd, Durham, NC 27709 USA
基金
美国能源部;
关键词
Carbon capture; Amine; Absorption; Non-aqueous solvent; Reaction kinetics; Activators; REACTION-KINETICS; CO2; ETHYLENEDIAMINE; BENZYLAMINE; MECHANISM; ETHANOL; BINDING; RANGE;
D O I
10.1016/j.cej.2018.03.193
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The rate of absorption of CO2 into amines in hydrophilic and hydrophobic solvent mixtures was studied in this work using a stopped-flow apparatus and a stirred-tank reactor. Monoethanolamine (MEA, primary amine) and N-methyl benzylamine (NMBZA, aromatic secondary amine) are chosen for this study and diluted in hydrophobic or hydrophilic solvents at different temperatures (295-343 K) and concentrations (0.01-4 kmol.m(-3)). It was found that the reaction rate between the secondary amine and CO2 in water is faster than the reaction with the linear primary amine (MEA); however, in an ethereal hydrophobic non-aqueous system the NMBZA-CO2 reaction is slower than the reaction of CO2 with MEA. With respect to amine, the reaction orders were found to be 0.9 and 1.2 for hydrophilic systems (MEA + H2O, NMBZA + H2O). For hydrophobic system they were found to be 0.6 and 2.7 (NMBZA + ethereal hydrophobic solvent, NMBZA + MePhOH + ethereal hydrophobic solvent). When amine was mixed with hydrophilic solvent (H2O), the activation energy of amine (NMBZA) to react with CO2 was found to be 27.66 kJ.mol(-1) and decreased to 10.37 kJ.mol(-1) when mixed with hydrophobic solvent (ethereal hydrophobic solvent). The activation energy of hydrophobic solvent was found to increase by adding an alcohol to the solvent (MePhOH + ethereal hydrophobic solvent). Both the zwitterion and termolecular mechanism were applied to the experimental data. It was found that deprotonation of the zwitterion and deprotonation of the loosely bound complex was the rate limiting step for the zwitterion and termolecular mechanism, respectively. Additionally, activators such as water, piperazine (PZ), and 4-hydroxy piperidinol (HPIP) were added to the ethereal hydrophobic non-aqueous solvent to determine the effect on the reaction rate. It was found that the water-and amine-based activators lead to an increase in the observed reaction rates as the concentration of the activators increased. The reaction of NMBA with CO2 and PZ exhibited a higher reaction rate but the PZ was insoluble in the non-aqueous NMBZA system, whereas HPIP remained soluble and offered a similar reaction rate. The activation energy of ethereal hydrophobic non-aqueous solvent to react with CO2 increased from 27.98 to 32.83 kJ.mol(-1) by adding PZ and 33.51 kJ.mol(-1) by HPIP and remained by adding H2O (26.78 kJ.mol(-1)). From this work, it was found that the non-aqueous solvent plays an important role in the reaction rate of CO2 with amines. Activators and solvents can be selected to increase the reaction rate with CO2.
引用
收藏
页码:514 / 525
页数:12
相关论文
共 36 条
[1]   Kinetics of the reactive absorption of carbon dioxide in high CO2-loaded, concentrated aqueous monoethanolamine solutions [J].
Aboudheir, A ;
Tontiwachwuthikul, P ;
Chakma, A ;
Idem, R .
CHEMICAL ENGINEERING SCIENCE, 2003, 58 (23-24) :5195-5210
[2]   Kinetics of the reaction of carbon dioxide with blends of amines in aqueous media using the stopped-flow technique [J].
Ali, SH .
INTERNATIONAL JOURNAL OF CHEMICAL KINETICS, 2005, 37 (07) :391-405
[3]   KINETICS OF CARBAMATE FORMATION AND BREAKDOWN [J].
CAPLOW, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1968, 90 (24) :6795-&
[4]  
Clariant, GEN 1843 ABS FLUID
[5]   KINETICS AND MECHANISM OF THE REACTION BETWEEN CARBON-DIOXIDE AND AMINES IN AQUEOUS-SOLUTION [J].
CROOKS, JE ;
DONNELLAN, JP .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2, 1989, (04) :331-333
[6]   REACTION OF CO2 WITH ETHANOLAMINES [J].
DANCKWERTS, PV .
CHEMICAL ENGINEERING SCIENCE, 1979, 34 (04) :443-446
[7]   KINETICS OF THE REACTION OF CARBON-DIOXIDE WITH SECONDARY-AMINES IN POLYETHYLENE-GLYCOL [J].
DAVIS, RA ;
SANDALL, OC .
CHEMICAL ENGINEERING SCIENCE, 1993, 48 (18) :3187-3193
[8]  
Duatepe F. P. G., 2016, REACTION KINETICS CA
[9]   Mechanism and Kinetics of Carbon Dioxide Capture Using Activated 2-Amino-2-methyl-1,3-propanediol [J].
Gordesli, F. Pinar ;
Ume, Cyril Sunday ;
Alper, Erdogan .
INTERNATIONAL JOURNAL OF CHEMICAL KINETICS, 2013, 45 (09) :566-573
[10]   CO2-binding organic liquids (CO2BOLs) for post-combustion CO2 capture. [J].
Heldebrant, David J. ;
Yonker, Clement R. ;
Jessop, Philip G. ;
Phan, Lam .
GREENHOUSE GAS CONTROL TECHNOLOGIES 9, 2009, 1 (01) :1187-1195