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Process simulations of post-combustion CO2 capture for coal and natural gas-fired power plants using a polyethyleneimine/silica adsorbent

机译:使用聚乙烯亚胺/二氧化硅吸附剂对煤和天然气发电厂的燃烧后二氧化碳捕集的过程模拟

摘要

The regeneration heat for a polyethyleneimine (PEI)/silica adsorbent based carbon capture system is first assessed in order to evaluate its effect on the efficiency penalty of a coal or natural gas power plant. Process simulations are then carried out on the net plant efficiencies for a specific supercritical 550 MWe pulverized coal (PC) and a 555 MWe natural gas combined cycle (NGCC) power plant integrated with a conceptually designed capture system using fluidized beds and PEI/silica adsorbent. A benchmark system applying an advanced MEA absorption technology in a NETL report (2010) is used as a reference system. Using the conservatively estimated parameters, the net plant efficiency of the PC and NGCC power plant with the proposed capture system is found to be 1.5% and 0.6% point higher than the reference PC and NGCC systems, respectively. Sensitivity analysis has revealed that the moisture adsorption, working capacity and heat recovery strategies are the most influential parameters to the power plant efficiency. Under an optimal scenario with improvements in increasing the working capacity by 2% points and decreasing moisture adsorption by 1% point, the plant efficiencies with the proposed capture system are 2.7% (PC) and 1.9% (NGCC) points higher than the reference systems.
机译:首先评估基于聚乙烯亚胺(PEI)/二氧化硅吸附剂的碳捕获系统的再生热,以评估其对燃煤或天然气发电厂效率损失的影响。然后,针对特定超临界550 MWe煤粉(PC)和555 MWe天然气联合循环(NGCC)电厂的净工厂效率进行流程模拟,该电厂与采用流化床和PEI /二氧化硅吸附剂的概念设计的捕集系统集成在一起。 NETL报告(2010)中应用了先进的MEA吸收技术的基准系统用作参考系统。使用保守估计的参数,使用建议的捕集系统的PC和NGCC电厂的净电厂效率分别比参考PC和NGCC系统高1.5%和0.6%。敏感性分析表明,水分吸附,工作能力和热回收策略是对电厂效率影响最大的参数。在将工作能力提高2%点并将水分吸收降低1%点的改进的最佳方案下,建议的捕集系统的工厂效率比参考系统高出2.7%(PC)和1.9%(NGCC)点。

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