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Fermentative biohydrogen production from starch-containing textile wastewater

机译:从含淀粉的纺织废水中发酵生产生物氢

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摘要

The present study deals with the biohydrogen production from starch-containing waste-water collected from the textile industry in Taiwan. The effects of inoculums collected from different sources (sewage sludge, soil and cow dung), substrate concentrations (5-25 g COD/L) and pH (4.0-8.0) on hydrogen production from wastewater were investigated. The cow dung seed had the highest hydrogen production of 101 mL with hydrogen content in biogas of 32.2%. It corresponds to a hydrogen yield (HY) of 1.56 mol H_2/mol hexose and hydrogen production rate (HPR) of 0.93 L/L/d. Response surface methodology was used to evaluate the effects of initial cultivation pH (4.0-8.0) and substrate concentration (5-25 g COD/L) on the hydrogen production at 35 ℃. At pH 7.0 with a wastewater concentration of 20 g COD/L, a maximum hydrogen production of 66 mL with 31.9% H_2 and corresponding to an HY of 0.97 mol H_2/mol hexose and an HPR of 1.14 L/L/d were obtained. According to the response surface analysis, the optimal conditions for high HPR were a wastewater concentration of 13 g COD/L at an initial cultivation pH of 7.0. The main soluble metabolic products were acetate and butyrate for hydrogen fermentation from textile wastewater.
机译:本研究涉及从台湾纺织业收集的含淀粉废水的生物氢生产。研究了从不同来源(污水污泥,土壤和牛粪)收集的接种物,底物浓度(5-25 g COD / L)和pH(4.0-8.0)对废水制氢的影响。牛粪种子产生的氢气最高,为101 mL,沼气中的氢气含量为32.2%。它对应于1.56 mol H_2 / mol己糖的氢气产率(HY)和0.93 L / L / d的氢气产生速率(HPR)。响应面法用于评估初始培养pH(4.0-8.0)和底物浓度(5-25 g COD / L)对35℃制氢的影响。在pH值为7.0,废水浓度为20 g COD / L的条件下,获得的最大氢气产量为66 mL,含31.9%H_2,对应的HY为0.97 mol H_2 / mol己糖,HPR为1.14 L / L / d。根据响应面分析,高HPR的最佳条件是初始培养pH值为7.0时废水浓度为13 g COD / L。主要的可溶性代谢产物是乙酸盐和丁酸盐,用于从纺织废水中进行氢发酵。

著录项

  • 来源
    《International journal of hydrogen energy》 |2012年第2期|p.2050-2057|共8页
  • 作者单位

    Department of Environmental Engineering and Science, Feng Chia University, Taiwan,Green Energy Development Center, Veng Chia University, Taiwan;

    Master Program of Green Energy Science and Technology, Feng Chia University, Taiwan;

    Microbial Sciences Division, Agharkar Research Institute, Pune 411004, India;

    Department of Landscape Architecture, Chungchou Institute of Technology, Taiwan;

    Department of Chemical Engineering, National Cheng Kung University, Taiwan;

    Department of Environmental Engineering and Science, Feng Chia University, Taiwan,Green Energy Development Center, Veng Chia University, Taiwan,Department of Water Resources Engineering, Feng Chia University, 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

    biohydrogen; hydrogen yield; hydrogen production rate; response surface methodology; textile wastewater; volatile fatty acid;

    机译:生物氢氢气产量制氢率响应面方法纺织废水;挥发性脂肪酸;

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