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Effect of the CO2 enhancement on the performance of a micro gas turbine with a pilot-scale CO2 capture plant

机译:CO2增强对带先导CO2捕获植物的微燃气轮机性能的影响

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摘要

Gas turbines are a viable and secure option both economically and environmentally for combined heat and power generation. Process modelling of a micro gas turbine for CO2 injection and exhaust gas recirculation (EGR) is performed. Further, this study is extended to assess the effect of the CO2 injection on the pilot-scale CO2 capture plant integrated with a micro gas turbine. In addition, the impact of the EGR on the thermodynamic properties of the fluid at different locations of the micro gas turbine is also evaluated. The micro gas turbine and CO2 injection models are validated against the set of experimental data and the performance analysis of the EGR cycle results in CO2 enhancement to 5.04 mol% and 3.5 mol%, respectively. The increased CO2 concentration in the flue gas, results in the specific reboiler duty decrease by 20.5 % for pilot-scale CO2 capture plant at 90 % CO2 capture rate for 30 wt. % MEA aqueous solution. The process system analysis for the validated models results in a much better comprehension of the impact of the CO2 enhancement on the process behaviour.
机译:燃气轮机是热电联产的经济和环保选择。进行了用于二氧化碳注入和废气再循环(EGR)的微型燃气轮机的过程建模。此外,这项研究扩展到评估二氧化碳注入对与微型燃气轮机集成的中试规模的二氧化碳捕集装置的影响。另外,还评估了EGR对在微型燃气轮机的不同位置处的流体的热力学性质的影响。根据一组实验数据验证了微型燃气轮机和CO2喷射模型,并且EGR循环的性能分析导致CO2分别提高至5.04 mol%和3.5 mol%。烟道气中CO2浓度的增加导致中试规模的CO2捕集装置在30 wt。%的CO2捕集率达到90%时,特定的再沸器负荷降低20.5%。 %MEA水溶液。对经过验证的模型进行的过程系统分析可以更好地理解CO2增强对过程行为的影响。

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