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首页> 外文期刊>International journal of hydrogen energy >Statistical optimization of biohydrogen and ethanol production from crude glycerol by microbial mixed culture
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Statistical optimization of biohydrogen and ethanol production from crude glycerol by microbial mixed culture

机译:微生物混合培养从粗甘油生产生物氢和乙醇的统计优化

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摘要

Design of Experiments (DoE) was applied to improve the ability of enriched activity sludge to efficiently convert crude glycerol from biodiesel industry into hydrogen and ethanol, using a very simple synthetic medium. Based on Plackett-Burman screening design, glycerol concentration, temperature and initial pH were identified as significant variables. Box-Behnken design and Response Surface Method (RSM) were then used for optimization. The maximum hydrogen yield of 0.96 mol H_2/mol glycerol was estimated at the temperature of 37.0 ℃, initial pH of 7.9 and glycerol concentration of 15.0 g/L. Maximum hydrogen production rate of 2191 mL/L/d was estimated at the temperature of 37.3 ℃, initial pH of 8.0 and glycerol concentration of 15.2 g/L. Finally maximum ethanol production of 7.92 g/L was estimated at an initial pH of 8.0 and glycerol concentration of 15.0 g/L (temperature had no significant effect). These results show that it is possible to obtain both, high yield and production of hydrogen and ethanol together, using a very simple synthetic medium, without trace element- and vitamin solution, tryptone or yeast extract.
机译:实验设计(DoE)用于提高浓缩活性污泥的能力,可使用一种非常简单的合成介质将生物柴油工业中的粗甘油有效地转化为氢和乙醇。根据Plackett-Burman筛选设计,将甘油浓度,温度和初始pH值确定为重要变量。然后使用Box-Behnken设计和响应面方法(RSM)进行优化。在37.0℃的温度,初始pH值为7.9和甘油浓度为15.0 g / L的情况下,估计的最大氢产量为0.96 mol H_2 / mol甘油。在37.3℃的温度,初始pH值为8.0和甘油浓度为15.2 g / L的情况下,估计的最高产氢量为2191mL / L / d。最后,在初始pH 8.0和甘油浓度为15.0 g / L时,估计最大乙醇产量为7.92 g / L(温度无明显影响)。这些结果表明,使用非常简单的合成介质,无需痕量元素和维生素溶液,胰蛋白or或酵母提取物,就可以同时获得高产和氢气和乙醇的生产。

著录项

  • 来源
    《International journal of hydrogen energy 》 |2012年第21期| p.16479-16488| 共10页
  • 作者单位

    ENEA-Italian Agency for New Technologies, Energy and Sustainable Development, Dep. of Renewable Energy Sources,Lab for Biomass and Bioenergy, Rome, Italy,State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology (HIT), China,ENEA Casaccia, Dep. UTRINN-BIO, Via Anguillarese 301, 00123 Rome, Italy;

    University of Insubria, Dep. of Science and High Technology, Como, Italy;

    ENEA-Italian Agency for New Technologies, Energy and Sustainable Development, Dep. of Renewable Energy Sources,Lab for Biomass and Bioenergy, Rome, Italy;

    ENEA-Italian Agency for New Technologies, Energy and Sustainable Development, Dep. of Renewable Energy Sources,Lab for Biomass and Bioenergy, Rome, Italy;

    ENEA-Italian Agency for New Technologies, Energy and Sustainable Development, Dep. of Renewable Energy Sources,Lab for Biomass and Bioenergy, Rome, Italy;

    ENEA-Italian Agency for New Technologies, Energy and Sustainable Development, Dep. of Renewable Energy Sources,Lab for Biomass and Bioenergy, Rome, Italy;

    State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology (HIT), China,Joint Center for Microbial Ecology in Engineered System, Harbin Institute of Technology, P.O. Box 2614,202 Haihe Road, Harbin 150090, 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

    statistical optimization; crude glycerol; biohydrogen; bioethanol; dark fermentation; biodiesel;

    机译:统计优化;粗甘油生物氢生物乙醇黑暗发酵生物柴油;

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