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首页> 外文期刊>International journal of hydrogen energy >The role of input gas species to the cathode in the oxygen-ion conducting and proton conducting solid oxide fuel cells and their applications: Comparative 4E analysis
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The role of input gas species to the cathode in the oxygen-ion conducting and proton conducting solid oxide fuel cells and their applications: Comparative 4E analysis

机译:输入气体物种在氧离子传导中的阴极和固氮传导固体氧化物燃料电池的作用及其应用:对比4E分析

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摘要

Most of the gas species in the air entering the fuel cell through the cathode electrode is nitrogen. Nitrogen recognizes as the only reactant inside the fuel cell stack that remains unchanged during its internal chemical and electrochemical processes. Owing to this specific behavior of nitrogen, this study investigates the performance of two types of solid oxide fuel cells with different electrolytes (oxygen-ion conducting and proton conducting) and their electricity generation applications under the influence of changes in nitrogen ratio of the air entering the cathode electrode. Also, the role of simultaneous changes in nitrogen ratio with two main fuel cell design parameters, precisely, current density and fuel utilization factor, on the performance of the fuel cell is scrutinized. Moreover, this study compares the performance of two different electrolytes in the fuel cell structure and their application under identical conditions from thermodynamic, economic, and environmental prespectives. According to the results, with increasing input nitrogen ratio, the voltage output of each cell, energy and exergy efficiencies, electricity generation rate, and exergoeconomic factor of the applications decrease, while the unit cost of electricity and carbon dioxide emission increase. The sensitivity of the reduction in performance is higher in nitrogen ratios above 0.7. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:空气中的大多数气体物质通过阴极电极进入燃料电池是氮气。氮气识别为燃料电池堆内的唯一反应物,其在其内部化学和电化学过程中保持不变。由于氮的这种特异性行为,本研究研究了两种类型的固体氧化物燃料电池具有不同电解质(氧离子传导和质子传导)的性能及其发电应用,并在进入空气的氮比变化的影响下阴极电极。此外,仔细检查了燃料电池性能的两个主要燃料电池设计参数,施用氮气比的同时变化与两个主要的燃料电池设计参数的作用。此外,该研究比较了燃料电池结构中两种不同电解质的性能及其在热力学,经济和环境预期的相同条件下的应用。根据结果​​,随着输入氮比的增加,每个细胞的电压输出,能量和漏出效率,发电率和应用的持续经济因素,而电力单位成本和二氧化碳排放量增加。性能降低的敏感性较高0.7的氮比率较高。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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