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Simulation Model Evaluation of CO2 Capture by Aqueous MEA Scrubbing for Heat Requirement Analyses

机译:MEA水溶液擦洗CO2捕获的模拟模型评估,用于热需求分析

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Carbon dioxide is a powerful greenhouse gas, whose massive presence in the atmosphere causes gradual global warming. Absorption by means of chemical solvents is the most commonly used process for CO2 removal. It can be applied to gaseous streams in power plants, natural gas, and refinery gas. Amine scrubbing is widely considered the most mature technology for PCC (post-combustion CO2 capture), and 30% wt. MEA aqueous solution can be taken as the baseline solvent to be used as reference for studies focused on modelling and simulation. Thermodynamics, kinetics and mass transfer influence the chemical absorption process. The thermodynamic model exerts an influence also on the determination of the overall heat of absorption of the acid gas in the solvent, being the heat released at chemical equilibrium related to the extent of reactions. Its estimation is of paramount importance, since it is directly related to the energy requirement at the reboiler of the solvent regeneration column and determines the temperature profile along the absorber. The model used in this work has been previously validated by comparison with data of absorption performances with regard to mass transfer phenomenon. In this work, results obtained from simulations have been checked against experimental data, by focusing on the thermodynamic framework and its influence on the evaluation of the reboiler duty, for possible energy saving solutions in scale-up design.
机译:二氧化碳是一种强大的温室气体,其在大气中的大量存在导致全球变暖。通过化学溶剂吸收是CO 2除去的最常用方法。它可以应用于发电厂,天然气和炼油厂的气流。胺擦洗被广泛认为是PCC(燃烧后CO2捕获)和30%WT的最成熟技术。 MEA水溶液可以作为基线溶剂作为参考的基线溶剂,所述研究专注于建模和模拟。热力学,动力学和传质影响化学吸收过程。热力学模型也对溶剂中酸性气体的整体热量的测定产生影响,是在与反应程度相关的化学平衡时释放的热量。其估计至关重要,因为它与溶剂再生塔的再沸器的能量要求直接相关,并确定沿吸收器的温度曲线。通过与大规模转移现象的吸收性能数据进行验证,预先验证了本作工作中使用的模型。在这项工作中,通过专注于热力学框架和对再沸器义务评估的影响,针对实验数据检查了从模拟中获得的结果。

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