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Integration of heat recovery unit in coal fired power plants to reduce energy cost of carbon dioxide capture

机译:将热回收装置集成到燃煤电厂中,以减少二氧化碳捕集的能源成本

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摘要

This work presents the feasibility of utilizing a novel heat recovery unit (HRU) technology, to directly recover thermal energy contained in flue gas utilizing an inert non-aqueous heat transfer fluid (HTF), which can then be utilized to lower CO2 capture costs and increase overall power plant efficiency. Silicone oil was identified as the HTF for use in this direct heat recovery process, as the fluid is thermally stable and resistant to oxidation. Interactions between the HTF and flue gas were investigated with the HTF found to be chemically resistant to SO2 and CO2. The viability of using an HTF as an energy vector between flue gas and CO2 rich-amine solvent was studied via bench-scale experimentation showing distinct phase separation devoid of reactions between the HTF and CO2 rich-amine solvent. Energy savings in reboiler heat duty with HRU integration were estimated using Aspen Plus simulations. Simulation results suggest HRU integration schemes could lower reboiler heat duty between 15.1% and 31.2%.
机译:这项工作提出了利用新型热回收单元(HRU)技术,利用惰性非水传热流体(HTF)直接回收烟气中包含的热能的可行性,然后可以利用该热量来降低CO2的捕集成本和提高电厂整体效率。硅油被确定为可用于此直接热回收过程的HTF,因为该流体具有热稳定性且抗氧化。研究了HTF和烟道气之间的相互作用,发现该HTF对SO2和CO2具有化学抗性。通过台式规模实验研究了使用HTF作为烟气与富含CO2的胺溶剂之间的能量载体的可行性,显示出明显的相分离,没有HTF与富含CO2的胺溶剂之间的反应。使用Aspen Plus仿真估算了通过HRU集成实现的再沸器热负荷节能。仿真结果表明,HRU集成方案可以将再沸器的热负荷降低15.1%至31.2%。

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