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首页> 外文期刊>International Journal of Greenhouse Gas Control >1D and 2D absorption-rate/kinetic modeling and simulation of carbon dioxide absorption into mixed aqueous solutions of MDEA and PZ in a laminar jet apparatus
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1D and 2D absorption-rate/kinetic modeling and simulation of carbon dioxide absorption into mixed aqueous solutions of MDEA and PZ in a laminar jet apparatus

机译:一维和二维吸收率/动力学模型以及层流射流装置中MDEA和PZ混合水溶液中二氧化碳吸收的模拟

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The kinetics of the reaction between carbon dioxide (CO sub(2)) and mixed solutions of methyldiethanolamine (MDEA) and piperazine (PZ) was investigated experimentally in a laminar jet apparatus. The experimental kinetic data were obtained under no interfacial turbulence and over a temperature range from 313 to 333 K, MDEA/PZ wt% concentration ratios of 27/3, 24/6 and 21/9, and CO sub(2) loadings from 0.0095 to 0.33 mol CO sub(2)/mol amine. In addition, a new absorption-rate/kinetics model for the kinetics of the mixed of solvents was developed, which takes into account the coupling between chemical equilibrium, mass transfer, and all possible chemical reactions involved in the CO sub(2) reaction with MDEA/PZ solvent. The partial differential equations of this model were solved by the finite element numerical method (FEM) based on COMSOL software. The obtained experimental kinetics data were used to obtain the kinetic parameters of CO sub(2) absorption into MDEA/PZ solutions. The reaction-rate constant obtained for PZ blended with MDEA was kPZ = 2.572 x 10 super(12) exp(-5211/T). The 2D model for the blended amines MDEA/PZ has revealed the concentration profiles of all the species in both the radial and axial directions of the laminar jet which has enabled a better understanding of the correct sequence in which the reaction steps involved in the reactive absorption of CO sub(2) in aqueous mixed MDEA/PZ solution occur. It also revealed that PZ may be depleted by the time the solvent blend of MDEA/PZ with a loading greater than 0.015 mol/mol amine is exposed to CO sub(2) from the top of the laminar jet absorber.
机译:在层流喷射装置中实验研究了二氧化碳(CO sub(2))与甲基二乙醇胺(MDEA)和哌嗪(PZ)混合溶液之间的反应动力学。实验动力学数据是在无界面湍流和313至333 K的温度范围内获得的,MDEA / PZ wt%浓度比为27 / 3、24 / 6和21/9,CO sub(2)载荷为0.0095至0.33 mol CO sub(2)/ mol胺。此外,针对溶剂混合物的动力学建立了新的吸收速率/动力学模型,该模型考虑了化学平衡,传质以及与CO sub(2)反应涉及的所有可能化学反应之间的耦合。 MDEA / PZ溶剂。通过基于COMSOL软件的有限元数值方法(FEM)求解了该模型的偏微分方程。获得的实验动力学数据用于获得CO sub(2)吸收到MDEA / PZ溶液中的动力学参数。 PZ与MDEA混合得到的反应速率常数为kPZ = 2.572 x 10 super(12)exp(-5211 / T)。混合胺MDEA / PZ的2D模型揭示了层流射流径向和轴向上所有物质的浓度分布图,这使人们能够更好地理解反应步骤涉及反应性吸收的正确顺序混合MDEA / PZ水溶液中的CO sub(2)发生。还表明,当层流射流吸收器顶部的MDEA / PZ溶剂共混物的负载量大于0.015 mol / mol胺时,PZ可能会耗尽。

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