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Study of gas-steam combined cycle power plants integrated with MCFC for carbon dioxide capture

机译:燃气蒸汽联合循环发电厂与MCFC集成的二氧化碳捕获

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In the field of fossil-fuel based technologies, natural gas combined cycle (NGCC) power plants are currently the best option for electricity generation, having an efficiency close to 60%. However, they produce significant CO2 emissions, amounting to around 0.4 tonne/MWh for new installations. Among the carbon capture and sequestration (CCS) technologies, the process based on chemical absorption is a well-established technology, but markedly reduces the NGCC performances. On the other side, the integration of molten carbonate fuel cells (MCFCs) is recognized as an attractive option to overcome the main drawbacks of traditional CCS technologies. If the cathode side is fed by NGCC exhaust gases, the MCFC operates as a CO2 concentrator, beside providing an additional generating capacity. In this paper the integration of MCFC into a two pressure levels combined cycle is investigated through an energy analysis. To improve the efficiency of MCFC and its integration within the NGCC, plant configurations based on two different gas recirculation options are analyzed. The first is a traditional recirculation of exhaust gases at the compressor inlet; the second, mainly involving the MCFC stack, is based on recirculating a fraction of anode exhaust gases at the cathode inlet. Effects of MCFC operating conditions on energy and environmental performances of the integrated system are evaluated.
机译:在化石燃料技术领域,天然气联合循环(NGCC)发电厂目前是发电的最佳选择,效率接近60%。然而,它们产生了重要的二氧化碳排放量,适用于新装置约为0.4吨/毫秒。在碳捕获和封存(CCS)技术中,基于化学吸收的过程是一种良好的技术,但显着降低了NGCC性能。另一方面,熔融碳酸盐燃料电池(MCFC)的整合被认为是克服传统CCS技术的主要缺点的有吸引力的选择。如果阴极侧被NGCC废气进给,则MCFC在提供额外的发电容量之外作为CO2浓缩器操作。本文通过能量分析研究了MCFC将MCFC集成到两个压力水平组合循环中。为了提高MCFC的效率及其在NGCC内的集成,分析了基于两种不同的气体再循环选项的植物配置。首先是压缩机入口处的传统再循环。主要涉及MCFC堆叠的第二,是基于在阴极入口处重新循环阳极废气的一部分。评估了MCFC操作条件对集成系统能量和环境性能的影响。

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