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Natural gas combined cycle power plants with CO2 capture – Opportunities to reduce cost

机译:具有二氧化碳捕获功能的天然气联合循环发电厂–降低成本的机会

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摘要

A detailed analysis covering a thermodynamic and economic evaluation of a 440 MWe natural gas combined cycle power plant with an integrated CO2 removal plant, using an aqueous solution of monoethanolamine (MEA) has been used as basis for this study. The flow sheet representing the CO2 capture plant is optimized with respect to operation parameters and includes absorber intercooling and lean vapor recompression. In addition, to further reduce the costs of CO2 capture, the gas turbine utilizes exhaustgas recirculation (EGR) with a level of 40%, and thereby the CO2 content in the gas turbine exhaust gas is increased to almost double that of conventional operating gas turbines. A techno-economic evaluation of the simulated results of the extended MEA absorption/desorption process integrated into the natural gas combined cycle (NGCC) with EGR and CO2 compression is performed. The sensitivity of the economical model's response to changes in different economical input conditions has also been evaluated.It is shown that EGR in combination with a reduced specific reboiler duty adds significant benefits to both the operational and capital expenditures. It is also shown that the fuel costs and currency rates play important roles in providing reliable costestimations.
机译:这项详细的分析涵盖了使用单乙醇胺水溶液(MEA)对440 MWe天然气联合循环发电厂与一体的CO2去除装置进行热力学和经济评估的过程。代表CO2捕集装置的流程图针对操作参数进行了优化,包括吸收器中间冷却和稀蒸汽再压缩。另外,为了进一步降低捕获二氧化碳的成本,燃气轮机利用水平为40%的废气再循环(EGR),从而使燃气轮机废气中的CO2含量增加到几乎是常规运行燃气轮机的两倍。 。对扩展的MEA吸收/解吸过程的模拟结果进行技术经济评估,该过程集成到具有EGR和CO2压缩的天然气联合循环(NGCC)中。还评估了经济模型对不同经济输入条件下变化的响应的敏感性。结果表明,EGR与降低的特定再沸器负荷相结合,可为运营和资本支出带来显着收益。还表明,燃料成本和汇率在提供可靠的成本估算中起着重要作用。

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