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Energy harvesting from amine-based CO_2 capture: proof-of-concept based on mono-ethanolamine

机译:从胺基CO_2捕获中收集能量:基于单乙醇胺的概念验证

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摘要

Amine-based processes are the leading technology for CO2 capture, but their commercial deployment is hindered by their large energy requirement. In practice, the energy consumption of this CO2 capture process is a result of an inability to offset the energy required for CO2 desorption against the enthalpy released in CO2 absorption. Here, we propose a metal-mediated CO2-regenerative amine-based battery (CRAB) to directly convert the CO2-reaction enthalpy into electrical energy. Using the benchmark mono-ethanolamine (MEA) absorbent, we developed and validated a CRAB process model that is used to predict the energy harvesting performance. We then harvested an electrical energy of 8.3 kJe/mol CO2 from the lab-scale flow battery, demonstrating the proof-of-concept of energy harvesting from amine-based CO2 capture. Techno-economic analysis indicates that the CRAB energy harvesting system improved the power generation efficiency by 1.75% and decreased the CO2 avoided cost when integrated with a coal-fired power station, suggesting its potential to improve the techno-economic competitiveness of amine-based CO2 capture process.
机译:基于胺的工艺是捕获二氧化碳的领先技术,但由于其巨大的能源需求,阻碍了其商业应用。实际上,此CO2捕集过程的能量消耗是由于无法抵消CO2解吸所需的能量抵御CO2吸收释放的焓而导致的。在这里,我们提出了一种金属介导的基于CO2再生胺的电池(CRAB),将CO2反应焓直接转化为电能。使用基准的单乙醇胺(MEA)吸收剂,我们开发并验证了可用于预测能量收集性能的CRAB工艺模型。然后,我们从实验室规模的液流电池中收集了8.3 kJe / mol CO2的电能,这证明了从基于胺的CO2捕获中收集能量的概念证明。技术经济分析表明,CRAB能量收集系统与燃煤电厂集成后,发电效率提高了1.75%,并降低了避免CO2的成本,这表明其具有提高胺基CO2技术经济竞争力的潜力。捕获过程。

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