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Hierarchical calibration and validation framework of bench-scale computational fluid dynamics simulations for solvent-based carbon capture. Part 2: Chemical absorption across a wetted wall column

机译:基于溶剂型碳捕获的替补计算流体动力学模拟的分层校准和验证框架。 第2部分:穿过湿润壁柱的化学吸收

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Part 1 of this paper presents a numerical model for non-reactive physical mass transfer across a wetted wall column (WWC). In Part 2, we improved the existing computational fluid dynamics (CFD) model to simulate chemical absorption occurring in a WWC as a bench-scale study of solvent-based carbon dioxide (CO2) capture. To generate data for WWC model validation, CO2 mass transfer across a monoethanolamine (MEA) solvent was first measured on a WWC experimental apparatus. The numerical model developed in this work can account for both chemical absorption and desorption of CO2 in MEA. In addition, the overall mass transfer coefficient predicted using traditional/empirical correlations is conducted and compared with CFD prediction results for both steady and wavy falling films. A Bayesian statistical calibration algorithm is adopted to calibrate the reaction rate constants in chemical absorption/desorption of CO2 across a falling film of MEA. The posterior distributions of the two transport properties, i.e., Henry's constant and gas diffusivity in the non-reacting nitrous oxide (N2O)/MEA system obtained from Part 1 of this study, serves as priors for the calibration of CO2 reaction rate constants after using the N2O/CO2 analogy method. The calibrated model can be used to predict the CO2 mass transfer in a WWC for a wider range of operating conditions. (C) 2017 Society of Chemical Industry and John Wiley & Sons, Ltd.
机译:本文的第1部分呈现了穿过湿润壁柱(WWC)的非反应性物理传质的数值模型。在第2部分中,我们改进了现有的计算流体动力学(CFD)模型,以模拟WWC中发生的化学吸收作为溶剂基二氧化碳(CO2)捕获的基准级研究。为了产生用于WWC模型验证的数据,首先在WWC实验装置上测量单乙醇胺(MEA)溶剂的CO 2传质。本作工作中开发的数值模型可以考虑MEA中CO2的化学吸收和解吸。另外,使用传统/经验相关预测的整体传质系数进行并与稳态和波浪落叶薄膜的CFD预测结果进行比较。采用贝叶斯统计校准算法校准在MEA的落叶薄膜上校准CO2的化学吸收/解吸中的反应速率常数。两种运输性能的后分布,即亨利的恒定和气体扩散性在本研究的第1部分获得的非反应氧化亚氮(N2O)/ MEA系统中,用作使用后的CO 2反应速率常数的前导者N2O / CO2类比方法。校准的模型可用于预测WWC中的CO2质量传递,用于更广泛的操作条件。 (c)2017化学工业协会和约翰瓦利& SONS,LTD.

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