首页> 外文期刊>International journal of hydrogen energy >Experimental investigation of Direct Carbon Fuel Cell fueled by almond shell biochar: Part II. Improvement of cell stability and performance by a three-layer planar configuration
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Experimental investigation of Direct Carbon Fuel Cell fueled by almond shell biochar: Part II. Improvement of cell stability and performance by a three-layer planar configuration

机译:杏仁壳生物炭为燃料的直接碳燃料电池的实验研究:第二部分。通过三层平面配置提高电池稳定性和性能

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摘要

NiO-Samaria-Doped-Ceria (NiO-SDC) composite powders was synthesized by a traditional mechanical mixing process and tested as anode material for Direct Carbon Fuel Cell (DCFC), which uses almond shell biochar as fuel and molten carbonate-doped ceria composite as electrolyte. A three-layer pellet cell, viz. cathode (Lithiated NiO-SDC), composite electrolyte and anode (NiO-SDC) is fabricated by a die-pressing, screen printing and sintering method. In Part I, a bi-layer DCFC pellet powered by almond shell biochar was tested and demonstrated a good potential. In this paper, we report an improvement in the cell stability and performance by adding the (NiO-SDC) anode layer to the bi-layer pellet containing only cathode and electrolyte. The peak power density of the three-layer pellet cell at 700 ℃ increases to reach ISO raW cm~(-2) instead of 127 mW cm~(-2) while, the stability period is ameliorated to be around 130 min. The results indicated that this porous anode material is promising as anode for DCFCs. The DCFC single cells experiments demonstrated that the anode polarization is dominating the total cell polarization. Therefore, improved power output could be achieved with an improved anode.
机译:NiO-Samaria掺杂二氧化铈(NiO-SDC)复合粉末是通过传统的机械混合工艺合成的,并被测试为直接碳燃料电池(DCFC)的阳极材料,该燃料使用杏仁壳生物炭作为燃料和熔融碳酸盐掺杂的二氧化铈复合材料作为电解质。三层沉淀池,即。阴极(锂化NiO-SDC),复合电解质和阳极(NiO-SDC)是通过模压,丝网印刷和烧结方法制成的。在第一部分中,测试了由杏仁壳生物炭提供动力的双层DCFC颗粒,并显示了良好的潜力。在本文中,我们报告了通过将(NiO-SDC)阳极层添加到仅包含阴极和电解质的双层颗粒中,改善了电池的稳定性和性能。三层颗粒电池在700℃时的峰值功率密度从127 mW cm〜(-2)升高到ISO raW cm〜(-2),而稳定期缩短到130分钟左右。结果表明,该多孔阳极材料有望用作DCFC的阳极。 DCFC单电池实验表明,阳极极化主导了整个电池极化。因此,利用改进的阳极可以实现改进的功率输出。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第36期|16605-16614|共10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;

    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; NiO-SDC anode; Almond shell biochar; Stability; Performance;

    机译:DCFC;NiO-SDC阳极;杏仁壳生物炭;稳定性;性能;
  • 入库时间 2022-08-18 00:27:58

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