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Hydrogen Production in a Single Chamber Microbial Electrolysis Cell Lacking a Membrane

机译:缺乏膜的单室微生物电解池中的氢气生产

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摘要

Hydrogen gas can be produced by electrohydrogenesis in microbial electrolysis cells (MECs) at greater yields than fermentation and at greater energy efficiencies than water electrolysis. It has been assumed that a membrane is needed in an MEC to avoid hydrogen losses due to bacterial consumption of the product gas. However, high cathodic hydrogen recoveries (78 ± 1% to 96 ± 1%) were achieved in an MEC despite the absence of a membrane between the electrodes (applied voltages of 0.3 < E_(ap) < 0.8 V; 7.5 mS/cm solution conductivity). Through the use of a membrane-less system, a graphite fiber brush anode, and close electrode spacing, hydrogen production rates reached a maximum of 3.12 ± 0.02 m~3 H_2/m~3 reactor per day (292 ± 1 A/m~3) at an applied voltage of E_(ap) = 0.8 V. This production rate is more than double that obtained in previous MEC studies. The energy efficiency relative to the electrical input decreased with applied voltage from 406 ± 6% (E_(ap) = 0.3 V) to 194 ± 2% (E_(ap) = 0.8 V). Overall energy efficiency relative to both E_(ap) and energy of the substrate averaged 78 ± 4%, with a maximum of 86 ± 2% (1.02 ± 0.05 m~3 H_2/m~3 day, E_(ap) = 0.4 V). At E_(ap) = 0.2 V, the hydrogen recovery substantially decreased, and methane concentrations increased from an average of 1.9 ± 1.3% (E_(ap) = 0.3-0.8 V) to 28 ± 0% of the gas, due to the long cycle time of the reactor. Increasing the solution conductivity to 20 mS/ cm increased hydrogen production rates for E_(ap) = 0.3-0.6 V, but consistent reactor performance could not be obtained in the high conductivity solution at E_(ap) > 0.6 V. These results demonstrate that high hydrogen recovery and production rates are possible in a single chamber MEC without a membrane, potentially reducing the costs of these systems and allowing for new and simpler designs.
机译:氢气可以通过微生物发酵池(MEC)中的电水合产生,其产率高于发酵,且能量效率高于水电解。已经假定在MEC中需要膜以避免由于细菌消耗产物气而导致氢损失。然而,尽管电极之间没有膜(施加电压0.3 0.6 V的高电导率溶液中,无法获得一致的反应器性能。这些结果表明在没有膜的单室MEC中可以实现较高的氢气回收率和生产率,从而有可能降低这些系统的成本,并允许进行新的更简单的设计。

著录项

  • 来源
    《Environmental Science & Technology》 |2008年第9期|p.3401-3406|共6页
  • 作者

    DOUGLAS CALL; BRUCE E. LOGAN;

  • 作者单位

    Department of Civil and Environmental Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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