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Thermodynamic evaluation of supercritical oxy-type power plant with high-temperature three-end membrane for air separation

机译:高温三端空分超临界氧型电厂的热力学评估

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Among the technologies which allow to reduce greenhouse gas emissions, mainly of carbon dioxide, special attention deserves the idea of ‘zero-emission’ technology based on boilers working in oxy-combustion technology. In the paper a thermodynamic analysis of supercritical power plant fed by lignite was made. Power plant consists of: 600 MW steam power unit with live steam parameters of 650 °C/30 MPa and reheated steam parameters of 670 °C/6 MPa; circulating fluidized bed boiler working in oxy-combustion technology; air separation unit and installation of the carbon dioxide compression. Air separation unit is based on high temperature membrane working in three-end technology. Models of steam cycle, circulation fluidized bed boiler, air separation unit and carbon capture installation were made using commercial software. After integration of these models the net electricity generation efficiency as a function of the degree of oxygen recovery in high temperature membrane was analyzed.
机译:在可以减少主要是二氧化碳的温室气体排放的技术中,基于氧气燃烧技术的锅炉的“零排放”技术值得特别关注。本文对褐煤供料的超临界电厂进行了热力学分析。电厂包括:600 MW蒸汽动力装置,其新鲜蒸汽参数为650°C / 30 MPa,再热蒸汽参数为670°C / 6 MPa;采用氧气燃烧技术的循环流化床锅炉;空分装置和二氧化碳的压缩安装。空分装置基于采用三端技术的高温膜。使用商业软件制作了蒸汽循环,循环流化床锅炉,空气分离装置和碳捕集装置的模型。整合这些模型后,分析了高温发电效率与高温膜中氧气回收率的关系。

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