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Dynamic Modelling and Controllability Studies of a Commercial-Seale MEA Absorption Processes for CO2 Capture from Coal-Fired Power Plants

机译:燃煤发电厂二氧化碳捕获的商用海岸MEA吸收过程的动态建模与可控性研究

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This paper presents a mechanistic dynamic model of an industrial-scale carbon dioxide (CO2) capture plant using Monoethanolamine (MEA) as an absorbent. In order to remove 87% of CO2 from the flue gas stream generated from a 750 MW supercritical coal-fired power plant and produce a CO2 concentration of 95% in the CO2 product stream, a post-combustion CO2 capture plant with three absorbers and two strippers are needed,. A decentralized control structure composed of 11 proportional-integral (PI) controllers was proposed to maintain the dynamic operability of this commercial-scale CO2 capture plant. The evaluation of the plant's performance in closed-loop were conducted using multiple scenarios, i.e., the loss of CO2 recovery (%CC) control loop during variation of flue gas flow rate, a positive ramp change in the flue gas flow rate under a maximum withdrawal constraint on the reboilers' heat duty, and the disturbance in the flue gas composition resulting from the variation in coal composition and air flow rate. The controllability analysis performed on the proposed industrial-scale MEA absorption plant using the control system designed in this study shows that the plant is able to recover fast from most of the disturbances considered in the analysis. The insight provided from the present study can then be used to address the integration of the present CO2 capture plant to a coal-based power plant and evaluate the dynamic feasibility of this integration under various scenarios.
机译:本文介绍了使用单乙醇胺(MEA)作为吸收剂的工业规模二氧化碳(CO2)捕获植物的机械动力学模型。为了从750 MW超临界燃煤发电厂产生的烟气流中的87%的CO2,并在CO 2产物流中产生95%的CO 2浓度,燃烧后的CO2捕获植物,具有三个吸收器和两个需要脱衣舞席。提出了由11个比例积分(PI)控制器组成的分散控制结构,以维持该商业规模CO2捕获植物的动态可操作性。使用多种场景进行植物在闭环中的性能的评估,即在烟道气流速的变化过程中,CO2回收(%CC)控制回路的损失,烟气流量最大值的正斜坡变化撤出对再沸器的热义的限制,以及由煤组合物的变化和空气流速的烟道气组成中的扰动。在本研究中设计的控制系统对所提出的工业规模的MEA吸收厂进行的可控性分析表明,该工厂能够从分析中考虑的大多数干扰恢复。从本研究中提供的洞察力可以用于解决当前二氧化碳捕获工厂对煤基电厂的集成,并在各种场景下评估该集成的动态可行性。

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