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ULTRA LOW CARBON DIOXIDE EMISSION MCFC BASED POWER PLANT

机译:基于超低二氧化碳排放的MCFC发电厂

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The application of high temperature fuel cells in stationary power generation seems to be one of the possible solutions to the problem related to the environment preservation and to the growing interest for distributed electric power generation. Great expectations have been placed on both simple and hybrid fuel cell plants, thus making necessary the evolution of analysis strategies to evaluate thermodynamic performance, design improvements and acceleration of new developments. This paper investigates the thermodynamic potential of combining traditional internal combustion energy systems (i.e. gas turbine and internal combustion engine) with a Molten Carbonate Fuel Cell (MCFC) for medium and low-scale electrical power production with low CO_2 emissions. The coupling is performed by placing the fuel cell at the exhaust of the thermal engine. As in MCFCs the oxygen-charge carrier in the electrolyte is the carbonate ion, part of the CO_2 in the gas turbine flue gas is moved to the anode and then separated by steam condensation. Plant performance are evaluated in function of different parameters to identify optimal solutions. The results show that the proposed power system can be conveniently used as a source of power generation.
机译:高温燃料电池在固定式发电中的应用似乎是解决与环境保护相关的问题以及对分布式发电日益增长的兴趣的可能解决方案之一。对简单和混合燃料电池工厂都寄予了很高的期望,因此有必要发展分析策略以评估热力学性能,设计改进和加速新进展。本文研究了将传统的内燃能源系统(即燃气轮机和内燃发动机)与熔融碳酸盐燃料电池(MCFC)结合使用以产生低CO_2排放的中小型电力的热力学潜力。通过将燃料电池放置在热力发动机的排气口进行耦合。就像在MCFC中一样,电解质中的氧电荷载体是碳酸根离子,燃气轮机烟道气中的CO_2的一部分移至阳极,然后通过蒸汽冷凝分离。根据不同参数对工厂性能进行评估,以确定最佳解决方案。结果表明,所提出的电力系统可以方便地用作发电来源。

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