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Design, economics and parameter uncertainty in dynamic operation of post-combustion CO2 capture using piperazine (PZ) and MEA

机译:使用哌嗪(PZ)和MEA的燃烧二氧化碳捕获动态操作的设计,经济学和参数不确定性

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Post-combustion capture is a promising solution to mitigate the anthropogenic CO2 emission rate and reduce global warming. However, to make it economically attractive, the techno-economic performance of this process needs to be improved. This includes steady-state but also dynamic operation of the plant. Flexibility is particularly crucial from an economic and operational point of view since plants must balance the power production and the electricity demand on a daily basis. This work shows the impact of design decisions and uncertainties on the dynamic operation and economics of a CO2 capture plant using piperazine (PZ), compared to the benchmark MEA solvent. This is exemplified through dynamic model calculations. The results show that the capacity of the buffer tank is a key parameter for the flexibility of the plant. A small tank corresponds to lower capital cost but it leads to increased operation cost and also to flexibility/controllability issues. Both, the PZ and MEA plants present inverse response for small tanks. These plants are challenging to control.
机译:后燃烧后捕获是一种有希望的解决方案,可以减轻人为的二氧化碳排放率并减少全球变暖。然而,为了使其在经济上具有吸引力,需要改善该过程的技术经济性能。这包括稳态,也包括工厂的动态操作。由于植物必须每天平衡电力生产和电力需求,因此灵活性尤其至关重要。与基准MEA溶剂相比,这项工作显示了设计决策和不确定性对使用哌嗪(PZ)的CO2捕获植物的动态操作和经济学的影响。这是通过动态模型计算的例子。结果表明,缓冲罐的容量是植物灵活性的关键参数。小罐对应于较低的资本成本,但它导致运营成本增加以及灵活性/可控性问题。 PZ和MEA植物均对小罐带来反应。这些植物对控制有挑战性。

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