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Dynamic modelling of the absorber of a post-combustion CO_2 capture plant: Modelling and simulations

机译:燃烧后CO_2捕集装置吸收塔的动态建模:建模和仿真

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Modelling work related to carbon dioxide (CO_2) capture technologies is of great importance with respect to the design, control, and optimization of the capture process. Development of dynamic models as such is important since there is much information embedded with the dynamics of a plant which cannot be studied with steady state models. A model for the absorption column of a post-combustion CO_2 capture plant is developed following the rate based approach to represent heat and mass transfer. The Kent-Eisenberg model is used to compute the transfer and generation rates of the species. Sensitivity of the model for different physiochemical property correlations is analyzed. The predictions of the dynamic model for the capture plant start-up scenario and operation of the absorption column under varying operating conditions in the up-stream power plant and the down-stream stripping column are presented. Predictions of the transient behaviour of the developed absorber model appear realistic and comply with standard steady state models.
机译:与二氧化碳(CO_2)捕集技术有关的建模工作对于捕集过程的设计,控制和优化非常重要。这样的动态模型的开发非常重要,因为植物的动力学中嵌入了很多信息,而稳态模型无法研究这些信息。遵循基于速率的方法来表示热量和质量转移,从而为燃烧后的CO_2捕集装置的吸收塔建立了模型。 Kent-Eisenberg模型用于计算物种的转移和世代速率。分析了模型对不同理化性质相关性的敏感性。提出了捕集电厂启动方案和吸收塔在上游发电厂和下游汽提塔在不同运行条件下的运行动态模型的预测。对已开发的吸收器模型的瞬态行为的预测似乎是现实的,并且符合标准的稳态模型。

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