首页> 外文会议>International Conference on Greenhouse Gas Control Technologies >The Effect of Chemical Structure of Newly Synthesized Tertiary Amines Used for the Post Combustion Capture Process on Carbon dioxide (CO2): Kinetics of CO2 Absorption Using the Stopped-Flow Apparatus and Regeneration, and Heat Input of CO2 Regeneration
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The Effect of Chemical Structure of Newly Synthesized Tertiary Amines Used for the Post Combustion Capture Process on Carbon dioxide (CO2): Kinetics of CO2 Absorption Using the Stopped-Flow Apparatus and Regeneration, and Heat Input of CO2 Regeneration

机译:新合成的叔胺化学结构用于二氧化碳燃烧捕获过程的效果(CO2):CO2吸收的动力学,使用止动装置和再生,以及CO2再生的热输入

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This workpresents the effect of chemical structure of newly synthesized tertiary amines; 4-(dimethylamirio)-2-butanol (DMAB), 4-((2-hydroxyethyl)(methyl)amino)-2-butanol (HEMAB) and 4-((2-hydroxyethyl)(ethyl)amino)-2-butanol (HEEAB) based on the kinetic of the reactions of CO2 absorption in aqueous amine solution in terms of the second-order reaction rate constant (k2) using the stopped-flow apparatus at 298-313 K and 0.1-1.0 M. The rates and heats of CO2 absorption and regeneration using actual concentrations of single amine and blended amine solvents were also measured respectively at 313 K and 363 K. The results showed that the k2 of CO2 in amine solutions (i.e. HEEAB and HEMAB) were the first and second highest (1096.9 and 1043.6 m~3/kmol.s) comparing to DEAB, DMAB and MDEA (47.2, 19.9 and 11.1 m~3/kmol.s), respectively. Three amines (i.e. HEEAB, HEMAB and DMAB) had fast CO2 absorption rate (0.142, 0.111 and 0.082 mol CO2/min, respectively) and CO2 regeneration rate (0.295, 0.452 and 0.512 mol CO2/min, respectively) while maintaining a low heat input of CO2 regeneration (72.44, 60.48 and 39.73 kJ/mol CO2, respectively). The three blended amine solutions (MEA-HEEAB, MEA-HEMAB and MEA-DMAB) at ratio 5:1.25 M all had fast CO2 absorption rates (0.129, 0.108 and 0.094 mol CO2/min, respectively), CO2 regeneration rates (0.064, 0.072 and 0.070 mol CO2/min, respectively) and low heat input of CO2 regeneration (188.78, 171.85 and 130.27 kJ/mol CO2, respectively). Based on these results, it was proven that HEEAB, HEMAB and DMAB can be considered to be promising amine components for a post combustion CO2 capture process.
机译:这项工作项是新合成的叔胺化学结构的效果; 4-(二甲基氨基嘧啶)-2-丁醇(DMAB),4 - ((2-羟乙基)(甲基)氨基)-2-丁醇(HEMAB)和4 - ((2-羟乙基)(乙基)氨基)-2-丁醇(Heab)基于二阶反应速率(K2)在298-313k和0.1-1.0m中的二阶反应速率恒定(K2)的二阶反应速率恒定(K2)中的CO2溶液反应的动力学。该速率也分别在313k和363k下测定使用实际浓度的单胺和混合胺溶剂的CO 2吸收和再生的热量。结果表明,胺溶液中的CO 2 K2是第一和第二与DEAB,DMAB和MDEA(47.2,19.9和11.1 m〜3 / kmol.s)相比,最高(1096.9和1043.6 m〜3 / kmol.s)。三种胺(即Heab,hemab和dmab)具有快速的CO 2吸收率(0.142,0.111和0.082mol CO 2 / min),同时保持低热量的同时和CO 2再生率(分别为0.295,0.452和0.512 mol CO 2 / min)输入CO2再生(72.44,60.48和39.73 kJ / mol CO2)。三种混合胺溶液(MEA-Heab,Mea-hemab和Mea-dmab)以比例为5:1.25m,所有的CO 2吸收率(0.129,0.108和0.094mol CO 2 / min),CO 2再生率(0.064, 0.072和0.070 mol CO 2 / min,分别为CO2再生的低热量输入(188.78,171.85和130.27 kJ / mol CO2)。基于这些结果,证明了Heab,hemab和Dmab可以被认为是燃烧后CO2捕获过程的有前途的胺组分。

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