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Dynamic Modeling and Analysis of Amine-based Carbon Capture Systems

机译:基于胺类碳捕获系统的动态建模与分析

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Carbon capture technologies are studied widely to curb the rising trend in the atmospheric concentration of CO2causing global warming. The post-combustion carbon capture technology using amine solvents is one of the mature technologies that can be deployed to existing power plants. Chemical absorption based on an amine solvent has a fast reaction rate with a high capacity to capture CO2. However, a large amount of energy is needed to regenerate the CO2rich solvent after the absorption. Flexible operation with a properly chosen control structure is a way to alleviate this problem and developing a simple, yet accurate dynamic model is a key to finding stable operation conditions while maximizing the flexibility of the process. In this research, chemical absorption process based on the most widely used amine solvent, monoethanolamine (MEA), is developed using the commercial software ofgPROMS.The Kent-Eisenberg model and a rigorous rate-based approach are used to develop a dynamic column model. The process model is simulated and the results are compared with experimental data in the literature. The developed model is consistent with the experimental data within about 10% error. The model was used to compare two control strategies. As a result, the control strategy that control CO2capture with the lean solvent flow showed faster settling time than with the regeneration heat.
机译:研究了碳捕获技术,广泛研究,以遏制CO2CAUSING全球变暖的大气浓度的上升趋势。使用胺溶剂的燃烧后碳捕获技术是可以部署到现有电厂的成熟技术之一。基于胺溶剂的化学吸收具有高容量捕获CO 2的反应速率。然而,需要大量的能量来在吸收后再生CO2RICH溶剂。 Flexible operation with a properly chosen control structure is a way to alleviate this problem and developing a simple, yet accurate dynamic model is a key to finding stable operation conditions while maximizing the flexibility of the process.在该研究中,使用GROM的商业软件开发了基于最广泛使用的胺溶剂,单乙醇胺(MEA)的化学吸收过程。肯特 - 艾森伯格模型和基于严格的速率的方法用于开发动态柱模型。模拟过程模型,并将结果与​​文献中的实验数据进行比较。开发的模型与误差约10%的实验数据一致。该模型用于比较两个控制策略。结果,控制CO2CAPTURTURE与贫溶剂流量的控制策略显示出比再生热的更快的沉降时间。

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