首页> 外文期刊>International journal of hydrogen energy >Experimental investigation of direct carbon fuel cell fueled by almond shell biochar: Part I. Physico- chemical characterization of the biochar fuel and cell performance examination
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Experimental investigation of direct carbon fuel cell fueled by almond shell biochar: Part I. Physico- chemical characterization of the biochar fuel and cell performance examination

机译:杏仁壳生物炭为燃料的直接碳燃料电池的实验研究:第一部分生物炭燃料的理化特性和电池性能检查

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摘要

A wide variety of abundant low cost carbonaceous fuels such as coal-derived coke, petroleum coke (refinery wastes) and biochar from biomass carbonization can be utilized to generate electricity in a Direct Carbon Fuel Cell (DCFC) system. In this paper, a promising Intermediate-Temperature DCFC based on ceria-carbonate composite electrolyte is successfully tested at 600-750 ℃ using as fuel a biochar issued from almond shell carbonization. This bio-resource fuel gives the best open circuit cell potential (1.07 V) at 700 ℃. Measurements of the cell performance indicate a peak power density of 127 mW cm~(-2) for the almond shell biochar fuel, which is compared favorably with a peak power density of 100 mW cm~(-2) for activated carbon fuel used in previous work. Obtained results show that the electrochemical performance of the almond shell biochar as fuel is highly dependent on their intrinsic physico-chemical properties, such as chemical composition, surface area, the nature of mineral matter and content of oxygen- functional groups not only on the edges but also in the interior of the graphite structure of the almond shell biochar where the degree of coverage is higher. The cell performance is showed maintained due to the replenishment of oxygen-containing reactive sites which continuously appear at the reactive edge of the carbon crystal, as the edge continuously advances.
机译:在直接碳燃料电池(DCFC)系统中,可以利用多种丰富的低成本碳质燃料,例如煤制焦炭,石油焦炭(炼厂废料)和来自生物质碳化的生物炭,以发电。在本文中,以二氧化铈-碳酸酯复合电解质为基础的中温DCFC已成功地在600-750℃下进行了测试,并使用了杏仁壳碳化产生的生物炭作为燃料。这种生物资源燃料在700℃时具有最佳的开路电势(1.07 V)。电池性能的测量结果表明,杏仁壳生物炭燃料的峰值功率密度为127 mW cm〜(-2),相比之下,用于活性炭燃料的峰值功率密度为100 mW cm〜(-2)。之前的工作。所得结果表明,杏仁壳生物炭作为燃料的电化学性能高度依赖于其内在的物理化学性质,例如化学成分,表面积,矿物质的性质以及氧官能团的含量,不仅在边缘而且在杏仁壳生物炭的石墨结构内部,覆盖度较高。由于补充了含氧的反应性位点,从而保持了电池性能,该反应性位点随着边缘的不断前进而连续出现在碳晶体的反应性边缘。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第36期|16590-16604|共15页
  • 作者单位

    UR-Micro Electro Thermal Systems, National Engineering School of Sfax, University of Sfax, IPEIS, BP: 1172, 3018 Sfax, Tunisia;

    UR-Micro Electro Thermal Systems, National Engineering School of Sfax, University of Sfax, IPEIS, BP: 1172, 3018 Sfax, Tunisia;

    Tianjin Key Laboratory of Applied Catalysis Science and Technology and State Key Laboratory of Chemical Engineering, School of Chemical Engineering, Tianjin University, Tianjin 300072, China;

    UR-Micro Electro Thermal Systems, National Engineering School of Sfax, University of Sfax, IPEIS, BP: 1172, 3018 Sfax, Tunisia;

    Tianjin Key Laboratory of Applied Catalysis Science and Technology and State Key Laboratory of Chemical Engineering, School of Chemical Engineering, Tianjin University, Tianjin 300072, China;

  • 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

    DCFC; Almond shell; Biochar; Oxygen functional groups; CO oxidation; Performance;

    机译:DCFC;杏仁壳;生物炭氧官能团;一氧化碳性能;

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