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首页> 外文期刊>Journal of thermal analysis and calorimetry >Carbon monoxide reduction in solid oxide fuel cell-mini gas turbine hybrid power system
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Carbon monoxide reduction in solid oxide fuel cell-mini gas turbine hybrid power system

机译:固体氧化物燃料电池 - 迷你燃气涡轮机混合动力系统的一氧化碳减少

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摘要

In this paper, combined heat and power frameworks employing solid oxide fuel cell power module and a small-scale gas turbine are presented. The offered system is utilized as heat and power supply for residential consumers with a carbon dioxide sorption circulating fluidized bed. As well a favorable solution for the high penalties associated with CO2 capture and reuse of the CO contents is offered. The combined heat and power system considered by a different arrangement in order to high proficiency, controllability, heat recovery and high capacity of energy. In the proposed system, the unburned product from the solid oxide fuel cell is re-extracted and utilized as a fuel source. The suggested system is analyzed by the first and second law of thermodynamics. During this study, comprehensive calculations of chemistry and thermal within the fuel cell are performed to get accurate results. The impact of various parameters, for example fuel and oxidant rate, carbon dioxide removal, operating pressure, compressor parameter on work and heat output of the cycle as well as the discharge of carbon dioxide contamination, is investigated. The optimal pressure ratio of the compressor to minimize the carbon dioxide production is found.
机译:在本文中,提出了采用固体氧化物燃料电池电力模块和小型燃气轮机的组合热量和动力架构。提供的系统用作具有二氧化碳吸附循环流化床的居住消费者的热电电源。还提供了与CO2捕获相关的高惩罚的有利解决方案,并提供了CO内容的重用。通过不同的布置考虑的组合热电系统,以便高熟练,可控性,热回收和能量高的能量。在所提出的系统中,来自固体氧化物燃料电池的未燃烧产物被重新提取并用作燃料源。建议的系统由第一和第二热力学定律分析。在本研究期间,进行燃料电池内的化学和热量的综合计算以获得准确的结果。研究了各种参数的影响,例如燃料和氧化率,二氧化碳去除,操作压力,压缩机参数在循环的工作和热输出以及二氧化碳污染的排出。发现压缩机最大限度地减少二氧化碳生产的最佳压力比。

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