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Characterization of bubble formation in microfluidic fuel cells employing hydrogen peroxide

机译:使用过氧化氢的微流控燃料电池中气泡形成的表征

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摘要

In order to examine bubble evolution and discuss the effects of bubbles effect on the performance of microfluidic fuel cells, two 1.2-mm-depth microfluidic fuel cells employing 0.1-M H_2O_2 dissolved in 0.1-M NaOH solution and 0.05-M H_2SO_4 solution as fuel and oxidant, respectively, with transparent lids having width of 1.0 mm and 0.5 mm, are fabricated in the present study for both cell performance measurement and flow visualization. The results show that the present cells operating at either a higher volumetric flow or a smaller microchannel width yield both better performance and more violent bubble growth. The bubble growth rate, Q_g, in a given microfluidic fuel cell is almost the same at different regions of that cell at a given volumetric flow rate, i.e. 10~(-5)cm~3s~(-1) and 5 x 10~(-5)cm~3s~(-1), respectively, for cells having widths of 0.5 mm and 1.0 mm at Q_1 = 0.05 mLmin~(-1), and slightly increases at higher volumetric flow rates. Furthermore, the present study reports approximately constant values of Q_g/C_dA at various volumetric flow rates, which are 2 x 10~(-2) and 5 x 10~(-2)cm~3s~(-1) A~(-1), respectively, for cells having channel widths of 0.5 mm and 1.0mm. In addition, the 0.5-mm-wide cell has higher cell output and performs more tortuous polarization curve.
机译:为了检查气泡的演变并讨论气泡效应对微流控燃料电池性能的影响,两个1.2毫米深的微流控燃料电池采用将0.1M H_2O_2溶解在0.1M NaOH溶液和0.05M H_2SO_4溶液中作为燃料在本研究中,分别制造了具有1.0mm和0.5mm宽度的透明盖的氧化锌和氧化剂,用于电池性能测量和流动可视化。结果表明,以较高的体积流量或较小的微通道宽度运行的当前电池产生了更好的性能和更剧烈的气泡生长。在给定的体积流量下,给定的微流体燃料电池中的气泡生长速率Q_g在该电池的不同区域几乎相同,即10〜(-5)cm〜3s〜(-1)和5 x 10〜对于在Q_1 = 0.05 mLmin〜(-1)处宽度为0.5 mm和1.0 mm的单元,分别为(-5)cm〜3s〜(-1),并且在较高的体积流量下会略有增加。此外,本研究报告了在各种体积流量下Q_g / C_dA的近似恒定值,分别为2 x 10〜(-2)和5 x 10〜(-2)cm〜3s〜(-1)A〜(- 1)分别用于通道宽度为0.5 mm和1.0 mm的单元。此外,0.5毫米宽的晶胞具有更高的晶胞输出,并具有更弯曲的极化曲线。

著录项

  • 来源
    《Journal of power sources》 |2011年第6期|p.3233-3238|共6页
  • 作者单位

    Department of Mechanical Engineering. National Kaohsiung University of Applied Sciences, Kaohsiung80778. Taiwan;

    Department of Mechanical Engineering. National Kaohsiung University of Applied Sciences, Kaohsiung80778. Taiwan;

  • 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

    microfluidic; fuel cell; bubble;

    机译:微流体燃料电池;气泡;
  • 入库时间 2022-08-18 00:24:25

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