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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Thermodynamic and Economic Investigation of an Improved Graz Cycle Power Plant for CO{sub}2 Capture
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Thermodynamic and Economic Investigation of an Improved Graz Cycle Power Plant for CO{sub}2 Capture

机译:改进的格拉茨循环电厂CO {sub} 2捕集的热力学和经济研究

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Introduction of closed-cycle gas turbines with their capability of retaining combustion generated CO{sub}2 can offer a valuable contribution to the Kyoto goal and to future power generation. Therefore, research and development at Graz University of Technology since the 1990s has lead to the Graz Cycle, a zero emission power cycle of highest efficiency. It burns fossil fuels with pure oxygen, which enables the cost-effective separation of the combustion CO{sub}2 by condensation. The efforts for the oxygen supply in an air separation plant are partly compensated by cycle efficiencies far higher than 60%. In this work a further development, the S-Graz Cycle, which works with a cycle fluid of high steam content, is presented. Thermodynamic investigations show efficiencies up to 70% and a net efficiency of 60%, including the oxygen supply. For a 100 MW prototype plant the layout of the main turbomachinery is performed to show the feasibility of all components. Finally, an economic analysis of a S-Graz Cycle power plant is performed showing very low CO{sub}2 mitigation costs in the range of USD10/ton CO{sub}2 captured, making this zero emission power plant a promising technology in the case of a future CO{sub}2 tax.
机译:引入具有保留燃烧产生的CO {sub} 2能力的闭环燃气轮机,可以为实现京都议定书的目标和未来的发电做出宝贵的贡献。因此,自1990年代以来,格拉茨工业大学的研究与开发导致了格拉茨循环,这是效率最高的零排放功率循环。它使用纯氧燃烧化石燃料,从而可通过冷凝经济高效地分离燃烧的CO {sub} 2。空气分离厂中氧气供应的努力部分被远高于60%的循环效率所补偿。在这项工作中,提出了进一步的发展,即S-Graz循环,该循环可与高蒸汽含量的循环流体一起工作。热力学研究表明,包括氧气供应在内,效率高达70%,净效率为60%。对于一个100兆瓦的原型工厂,进行了主涡轮机的布置,以显示所有组件的可行性。最终,对S-Graz循环电厂进行了经济分析,结果表明,其降低的CO {sub} 2减排成本非常低,仅为10美元/吨CO {sub} 2,这使得该零排放电厂成为了有前景的技术。未来的CO {sub} 2税的情况。

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