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Catalytic combustion of alcohols for microburner applications

机译:微型燃烧器中醇的催化燃烧

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摘要

The combustion of energy dense liquid fuels in a catalytic micro-combustor, whose temperatures can be used in energy conversion devices, is an attractive alternative to cumbersome batteries. To miniaturize the reactor, an evaporation model was developed to calculate the minimum distance required for complete droplet vaporization. By increasing the ambient temperature from 298 to 350 K, the distance required for complete evaporation of a 6.5 μm droplet decreases from 3.5 to 0.15 cm. A platinum mesh acted as a preliminary measurement and demonstrated 75% conversion of ethanol. We then selected a more active rhodium-coated alumina foam with a larger surface area and attained 100% conversion of ethanol and 95% conversion of 1-butanol under fuel lean conditions. Effluent post-combustion gas analysis showed that varying the equivalence ratio results in three possible modes of operation. A regime of high carbon selectivity for CO_2 occurs at low equivalence ratios and corresponds to complete combustion with a typical temperature of 775 K that is ideal for PbTe thermoelectric energy conversion devices. Conversely for equivalence ratios greater than 1, carbon selectivity for CO_2 decreases as hydrogen, olefin and paraffin production increases. By tuning the equivalence ratio, we have shown that a single device can combust completely for thermoelectric applications, operate as a fuel reformer to produce hydrogen gas for fuel cells or perform as a bio-refinery for paraffin and olefin synthesis.
机译:能量密度高的液体燃料在催化微型燃烧器中的燃烧(其温度可用于能量转换装置中)是笨重电池的一种有吸引力的替代选择。为了使反应器小型化,开发了蒸发模型以计算完成液滴蒸发所需的最小距离。通过将环境温度从298 K增加到350 K,完全蒸发6.5μm液滴所需的距离从3.5 cm减小到0.15 cm。铂网用作初步测量,并证明了75%的乙醇转化率。然后,我们选择了一种活性更强的铑涂层氧化铝泡沫,该泡沫具有较大的表面积,并在燃料稀薄条件下获得了100%的乙醇转化率和95%的1-丁醇转化率。燃烧后的废气分析表明,改变当量比会导致三种可能的运行模式。对CO_2的高碳选择性会在低当量比下发生,并且对应于典型775 K的温度下的完全燃烧,这对于PbTe热电能量转换设备而言是理想的。相反,当当量比大于1时,随着氢气,烯烃和石蜡产量的增加,对CO_2的碳选择性降低。通过调整当量比,我们证明了单个设备可以完全燃烧以用于热电应用,可以用作燃料重整器以生产用于燃料电池的氢气,或者用作石蜡和烯烃合成的生物精炼厂。

著录项

  • 来源
    《Journal of power sources》 |2010年第7期|2008-2013|共6页
  • 作者单位

    US Army Research Laboratory, Sensors and Electron Devices Directorate, 2800 Powder Mill Road, Adelphi, MD 20783, United States;

    US Army Research Laboratory, Sensors and Electron Devices Directorate, 2800 Powder Mill Road, Adelphi, MD 20783, United States;

    US Army Research Laboratory, Sensors and Electron Devices Directorate, 2800 Powder Mill Road, Adelphi, MD 20783, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alcohols; combustion; microburner; reforming; electrospray; bio-refinery;

    机译:酒精燃烧;微型燃烧器改革电喷雾生物精炼厂;
  • 入库时间 2022-08-18 00:25:19

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