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Experimental characterization of a microtubular solid oxide fuel cell fueled with hydrogen, methane and hydrogen sulfide

机译:氢,甲烷和硫化氢为燃料的微管固体氧化物燃料电池的实验表征

摘要

A characterization of a microtubular-type Solid Oxide Fuel Cell (SOFC) has been performed using an electrochemical approach. Hydrogen and methane (both pure and diluted with argon) were used as fuels for the fuel cell, and also some preliminary results of hydrogen sulfide contamination were performed. These are important experiments to determine if this kind of fuel cells is suitable to be used with alternative and renewable fuels such as coal gas or biomass gas.The methods included analysis of transitory response, polarization curves, electrochemical impedance spectroscopy, outlet gas composition analysis by means of a mass spectrometer and electrochemical reaction analysis. The results show that methane could be used as a fuel for this kind of fuel cells as long as the fuel cell is not kept at open circuit potential, given that no cell degradation was observed under those conditions. The results with hydrogen sulfide showed an irreversible performance decrease at the first stages of contamination. After this initial performance decrease no further degradation was observed which indicates that this kind of fuel cells could be a suitable way of energetically use some alternative and renewable gases.These results constitute an important step to determine the tolerance levels of this kind of fuel cells towards methane and hydrogen sulfide and contribute to the investigation line that tries to determine the required fuel quality for this kind of fuel cell in terms of the admissible content of each contaminant. In addition to this, the use of electrochemical techniques to analyze the behavior of a Solid Oxide Fuel Cell constitutes a real innovation since the traditional approaches for this type of fuel cells were based on material science.……………………………………La caracterización de una pila de combustible de Óxido Sólido de tipo microtubular ha sido llevada a cabo usando un enfoque electroquímico. Se usó hidrógeno y metano como combustibles puros y diluidos con argón, y también se obtuvieron unos resultados preliminares de contaminación con ácido sulfhídrico. Estos experimentos son importantes para determinar si este tipo de pilas son adecuados para el aprovechamiento energético de combustibles renovables y alternativos como el gas procedente de la gasificación de biomasa o carbón.
机译:微管型固体氧化物燃料电池(SOFC)的表征已使用电化学方法进行。氢气和甲烷(纯净的和用氩气稀释的)被用作燃料电池的燃料,并且还进行了硫化氢污染的一些初步结果。这些重要的实验是确定此类燃料电池是否适合与替代燃料和可再生燃料(例如煤气或生物质气体)一起使用的方法,包括分析瞬态响应,极化曲线,电化学阻抗谱,通过质谱仪和电化学反应分析的手段。结果表明,只要在这些条件下未观察到电池退化,只要该燃料电池不保持开路电势,就可以将甲烷用作此类燃料电池的燃料。硫化氢的结果显示,在污染的第一阶段,不可逆的性能下降。在最初的性能下降之后,没有观察到进一步的降解,这表明这种燃料电池可能是一种积极使用替代气体和可再生气体的合适方法。这些结果构成了确定此类燃料电池对各种燃料的耐受水平的重要步骤。甲烷和硫化氢,并有助于研究线尝试根据每种污染物的允许含量确定此类燃料电池所需的燃料质量。除此之外,由于这种类型燃料电池的传统方法是基于材料科学的,因此使用电化学技术分析固体氧化物燃料电池的性能构成了真正的创新。………………………… …………可燃气体,微型管道,易燃品和电烙铁。易燃易爆,易燃易爆,易燃易爆,易燃易爆,易燃易爆。重要的决定性因素是可燃性可再生能源和可燃气体的可再生能源。

著录项

  • 作者

    Andrés Lozano Carlos;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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