首页> 外文期刊>International journal of hydrogen energy >Bioconversion of de-oiled Jatropha Waste (DJW) to hydrogen and methane gas by anaerobic fermentation: Influence of substrate concentration, temperature and pH
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Bioconversion of de-oiled Jatropha Waste (DJW) to hydrogen and methane gas by anaerobic fermentation: Influence of substrate concentration, temperature and pH

机译:厌氧发酵将脱油的麻风树废料(DJW)生物转化为氢气和甲烷气:底物浓度,温度和pH的影响

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摘要

Cellulosic materials-based de-oiled Jatropha Waste (DJW) was fermented to H_2 and CH_4 using sewage sludge inoculum. Batch assays were performed at various substrate concentrations (40-240 g/L), temperatures (25-65 ℃) and pHs (5.5-7.5). The peak hydrogen production rate (HPR) and hydrogen yield (HY) of 744.0 ± 11.3 mL H_2/L-d and 10.6 ± 0.2 mL H_2/g VS obtained when the optimal substrate concentration, pH, temperature were 200 g/L, 6.5, 55 ℃, respectively. The peak methane production rate (MPR) of 178.4 ± 5.6 mL CH_4/L-d obtained while DJW concentration, pH, temperature were 200 g/L, 7.0, 45 ℃, however, peak methane yield (MY) of 23.3 ± 0.1 mL CH_4/g VS obtained at 40 g/L, 7.0 and 55 ℃, respectively. Effect of substrate concentration on HPR and MPR was elucidated using Monod model. Butyrate and acetate were the main soluble metabolic products. Maximal carbohydrate removal and COD reduction were achieved as 51.7 ± 0.7% and 68.3 ± 1.6%, respectively.
机译:使用污水污泥接种物将纤维素材料基的脱油麻风树废物(DJW)发酵为H_2和CH_4。在各种底物浓度(40-240 g / L),温度(25-65℃)和pH(5.5-7.5)下进行批量分析。当最佳底物浓度,pH,温度为200 g / L,6.5、55时,制氢峰速率(HPR)和制氢量(HY)分别为744.0±11.3 mL H_2 / Ld和10.6±0.2 mL H_2 / g VS ℃分别。当DJW浓度,pH,温度为200 g / L,7.0、45℃时,甲烷的最高产甲烷率(MPR)为178.4±5.6 mL CH_4 / Ld,而甲烷的最高产甲烷率(MY)为23.3±0.1 mL CH_4 / Ld在40 g / L,7.0和55℃时分别获得gVS。使用Monod模型阐明了底物浓度对HPR和MPR的影响。丁酸盐和乙酸盐是主要的可溶性代谢产物。最大碳水化合物去除量和COD减少量分别达到51.7±0.7%和68.3±1.6%。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第1期|63-72|共10页
  • 作者单位

    Department of Environmental Engineering and Science, Feng Chia University, Taiwan;

    Department of Environmental Engineering and Science, Feng Chia University, Taiwan,Green Energy Development Center, Feng Chia University, Taiwan,Master's Program of Green Energy Science and Technology, 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

    de-oiled jatropha waste; hydrogen; methane; monod model; soluble metabolic product;

    机译:去麻风油的废油;氢;甲烷一元模型可溶性代谢产物;
  • 入库时间 2022-08-18 00:27:37

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