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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Combined Cycles With CO_2 Capture: Two Alternatives for System Integration
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Combined Cycles With CO_2 Capture: Two Alternatives for System Integration

机译:具有CO_2捕获的联合循环:系统集成的两种选择

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As carbon capture and storage technology has grown as a promising option to significantly reduce CO_2 emissions, system integration and optimization claim an important and crucial role. This paper presents a comparative study of a gas turbine cycle with postcombustion CO_2 separation using an amine-based absorption process with monoet-hanolamine. The study has been made for a triple pressure reheated 400 MWe natural gas-fuelled combined cycle with exhaust gas recirculation (EGR) to improve capture efficiency. Two different options for the energy supply to the solvent regeneration have been evaluated and compared concerning plant performance. In the first alternative heat is provided by steam extracted internally from the bottoming steam cycle, while in the second option an external biomass-fuelled boiler was utilized to generate the required heat. With this novel configuration the amount of CO_2 captured can be even more than 100% if the exhaust gas from the biofuelled boiler is mixed and cleaned together with the main exhaust gas flow from the combined cycle. In order to make an unprejudiced comparison between the two alternatives, the reduced steam turbine efficiency has been taken into consideration and estimated, for the alternative with internal steam extraction. The cycles have been modeled in the commercial heat and mass balance program IPSEPRO? using detailed component models. Utilizing EGR can double the CO_2 content of the exhaust gases and reduce the energy need for the separation process by approximately 2% points. Using an external biomass-fuelled boiler as heat source for amine regeneration turns out to be an interesting option due to high CO_2 capture effectiveness. However the electrical efficiency of the power plant is reduced compared with the option with internal steam extraction. Another drawback with the external boiler is the higher investment costs but nevertheless, it is flexibility due to the independency from the rest of the power generation system represents a major operational advantage.
机译:随着碳捕集与封存技术已成为一种显着降低CO_2排放量的有前途的选择,系统集成和优化发挥了重要而至关重要的作用。本文介绍了对燃烧后的CO_2进行分离的燃气轮机循环的比较研究,该燃烧采用单基哈诺胺的胺基吸收过程。已经对三重压力再加热的400 MWe天然气燃料联合循环和废气再循环(EGR)进行了研究,以提高捕集效率。已评估并比较了两种不同的溶剂再生能源供应方式,它们涉及到工厂的性能。在第一种选择中,热量是通过从底部蒸汽循环内部提取的蒸汽提供的,而在第二种选择中,利用外部生物质燃料的锅炉来产生所需的热量。如果将来自生物燃料锅炉的废气与来自联合循环的主要废气流进行混合和净化,采用这种新颖的配置,捕获的CO_2量甚至可以超过100%。为了在两个替代方案之间进行不偏颇的比较,对于内部蒸汽抽取的替代方案,已经考虑并估算了降低的蒸汽轮机效率。这些循环已在商业供热和质量平衡程序IPSEPRO中建模。使用详细的组件模型。利用EGR可使废气中的CO_2含量增加一倍,并将分离过程所需的能源减少大约2%。由于高的CO 2捕集效率,使用外部生物质燃料锅炉作为胺再生的热源已成为一种有趣的选择。但是,与带有内部蒸汽抽取的选件相比,发电厂的电效率降低了。外置锅炉的另一个缺点是较高的投资成本,但是由于与其他发电系统的独立性,它具有灵活性,这代表了主要的运行优势。

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