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Operational characteristics of the direct methanol fuel cell stack on fuel and energy efficiency with performance and stability

机译:直接甲醇燃料电池堆在燃料和能源效率上的运行特性以及性能和稳定性

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摘要

This paper is presented to investigate operational characteristics of a direct methanol fuel cell (DMFC) stack with regard to fuel and energy efficiency, including its performance and stability under various operating conditions. Fuel efficiency of the DMFC stack is strongly dependent on fuel concentration, working temperature, current density, and anode channel configuration in the bipolar plates and noticeably increases due to the reduced methanol crossover through the membrane, as the current density increases and the methanol concentration, anode channel depth, and temperature decreases. It is, however, revealed that the energy efficiency of the DMFC stack is not always improved with increased fuel efficiency, since the reduced methanol crossover does not always indicate an increase in the power of the DMFC stack. Further, a lower methanol concentration and temperature sacrifice the power and operational stability of the stack with the large difference of cell voltages, even though the stack shows more than 90% of fuel efficiency in this operating condition. The energy efficiency is therefore a more important characteristic to find optimal operating conditions in the DMFC stack than fuel efficiency based on the methanol utilization and crossover, since it considers both fuel efficiency and cell electrical power. These efforts may contribute to commercialization of the highly efficient DMFC system, through reduction of the loss of energy and fuel.
机译:本文旨在研究直接甲醇燃料电池(DMFC)堆在燃料和能源效率方面的运行特性,包括其在各种运行条件下的性能和稳定性。 DMFC燃料电池组的燃料效率在很大程度上取决于燃料浓度,工作温度,电流密度和双极板中的阳极通道配置,并且由于电流密度和甲醇浓度的增加,由于穿过膜的甲醇穿透减少,因此明显提高了燃料效率。阳极通道深度变小,温度降低。然而,发现由于增加的燃料效率并不总是提高DMFC堆的能量效率,因为降低的甲醇穿越并不总是表明DMFC堆的功率增加。此外,较低的甲醇浓度和温度以较大的电池电压差牺牲了电池组的功率和操作稳定性,即使电池组在此工作条件下显示出超过90%的燃料效率。因此,与基于甲醇利用和交叉的燃料效率相比,能量效率是在DMFC烟囱中找到最佳运行条件的更重要的特性,因为它同时考虑了燃料效率和电池电功率。这些努力可以通过减少能量和燃料的损失来促进高效DMFC系统的商业化。

著录项

  • 来源
    《International journal of hydrogen energy》 |2012年第7期|p.5946-5957|共12页
  • 作者单位

    HMC and INAME, Green Energy Research Institute, Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University, 98 Gunja-dong, Gwangjin-gu, Seoul 143-747, Republic of Korea;

    HMC and INAME, Green Energy Research Institute, Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University, 98 Gunja-dong, Gwangjin-gu, Seoul 143-747, Republic of Korea;

    Energy Lab, SAIT, Samsung Electronics, 14-1 Nongseo-dong, Giheung-gu, Yongin, Gyeonggi-do 446-712, Republic of Korea;

    Energy Lab, SAIT, Samsung Electronics, 14-1 Nongseo-dong, Giheung-gu, Yongin, Gyeonggi-do 446-712, Republic of Korea;

    Energy Lab, SAIT, Samsung Electronics, 14-1 Nongseo-dong, Giheung-gu, Yongin, Gyeonggi-do 446-712, Republic of Korea;

    Energy Lab, Samsung SDI Co., LTD, 575 Shin-dong, Yeongtong-gu, Suuwon-si, Gyeonggi-do 443-391, Republic of Korea;

  • 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

    direct methanol fuel cell; stack; fuel efficiency; stability; energy efficiency; methanol crossover;

    机译:直接甲醇燃料电池堆;燃油效率;稳定性;能源效率;甲醇交换;
  • 入库时间 2022-08-18 00:28:23

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