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首页> 外文期刊>International journal of critical infrastructure >Solar powered solid oxide fuel cell with thermoelectric generator
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Solar powered solid oxide fuel cell with thermoelectric generator

机译:带有热电发电机的太阳能固体氧化物燃料电池

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摘要

Durable, location independent, environmental-friendly sources of energy which allow for modular, few moving parts, low operating noise, high electricity generation efficiency and compact technology are highly desirable. Solid oxide fuel cells (SOFCs) are promising for such energy system development, since they are energy efficient and, if pure hydrogen is used, have virtually no emissions of greenhouse gases except water and heat. However, the technology is still in the early phases of development due to lack of a design for single hydrogen fuel cells, and problems with hydrogen production and storage. In this study, an all year round operation home generator recovering its waste heat, integrated with photovoltaic panels supplying energy to split recyclable water (electrolysis) into hydrogen and oxygen has been put in place. The mathematical models of the unit as energy, charge, efficiency, activation and concentration losses of gases in channels were elaborated. The models gave necessary information for assessing and optimising the design. The experimental results have demonstrated a remarkable energy generation and recovering with the integrated system, lower noise, possibility of achieving hydrogen economy and therefore clean environment.
机译:迫切需要耐用,位置独立,环保的能源,这些能源允许模块化,活动部件少,运行噪音低,发电效率高和技术紧凑。固态氧化物燃料电池(SOFC)具有很高的能源效率,并且如果使用纯氢,则除了水和热量外几乎没有温室气体的排放,因此有望用于这种能源系统的开发。然而,由于缺乏用于单个氢燃料电池的设计以及氢产生和存储的问题,该技术仍处于开发的早期阶段。在这项研究中,已经安装了一个常年运行的家用发电机,用于回收其余热,并与光伏板集成在一起,光伏板提供能量以将可循环利用的水(电解)分解为氢气和氧气。阐述了通道中气体的能量,电荷,效率,活化和浓度损失等单位的数学模型。这些模型为评估和优化设计提供了必要的信息。实验结果表明,通过集成系统可以产生显着的能量并进行回收,噪音更低,可以实现氢经济,因此环境清洁。

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