首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical Study of Ammonia/O_2-Fired Semiclosed Cycle Gas Turbine for Oxy-Fuel IGCC Power Generation With CO_2 Capture
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Numerical Study of Ammonia/O_2-Fired Semiclosed Cycle Gas Turbine for Oxy-Fuel IGCC Power Generation With CO_2 Capture

机译:用于Co_2捕获的氧气燃料IGCC发电的氨/ O_2射循环燃气轮机的数值研究

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摘要

With an increase in renewable energy generation, thermal power generation has been switched to standby power in various parts of the world. Ammonia, one of the storage and transport media for H_2, is produced in a highly efficient oxyfuel integrated coal gasification combined cycle (IGCC) system with CO_2 capture, for the future hydrogen-using society. Using ammonia as an industrial raw material, agricultural fertilizer, and transportation fuel, energy systems can be established by combining renewable energy and thermal power generation. Therefore, it is possible to simultaneously construct a thermal power supply system suitable for backup power source owing to the fluctuation of the renewable power generation and to improve the availability of the thermal power plant and the load-leveling. This will serve as an incentive to build a future zero-emission thermal power plant. In this study, an oxy-fuel IGCC power generation coproduced with ammonia and CO_2 capture is conceptually proposed. Furthermore, the features and challenges of a gas turbine that fuels CO_2-free NH_3 are investigated. In particular, the combustion exhaust characteristics of ammonia/oxygen-fired semiclosed cycle gas turbine combustor in comparison with those of the conventional fuels are characterized through a kinetic analysis.
机译:随着可再生能源产生的增加,热发电已在世界各地的待机电力转换为备用电力。氨是H_2的储存和运输介质之一,在高效的氧氟综合煤气化联合循环(IGCC)系统中,用于未来的氢气使用社会。使用氨作为工业原料,农业肥料和运输燃料,能源系统可以通过结合可再生能源和热发电来建立。因此,可以同时构造由于可再生能源的波动和改善热电厂和负载调平的可用性而适用于备用电源的热电源系统。这将作为构建未来零排放热电厂的动机。在该研究中,概念性地提出了一种用氨和CO_2捕获组成的氧燃料IGCC发电。此外,研究了燃料CO_2无NH_3的燃气轮机的特征和挑战。特别地,与传统燃料的那些相比,氨/氧气分流循环燃气涡轮机燃烧器的燃烧排气特性通过动力学分析表征。

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