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Thermophilic bio-energy process study on hydrogen fermentation with vegetable kitchen waste

机译:蔬菜厨余垃圾氢发酵的高温生物能工艺研究

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摘要

An intermittent-continuous stirred tank reactor (I-CSTR) was evaluated for thermophilic anaerobic hydrogen fermentation with vegetable kitchen waste (VKW). The seeding sludge was enriched from kitchen waste compost. Because of different seasonal dietary habits, the quality of vegetable kitchen waste was unstable, and all variations of composition were in the range from 20 to 40%. The I-CSTR process was conducted under different volumetric loading rates (VLR) with different VKW-diluted concentrations. The hydrogen production rate and yield in Run 2 (VLR as 28 g-COD I~(-1) day~(-1)) were 1.0 L-H_2 L~(-1) day~(-1) and 1.7 mmol-H_2 g-COC~(-1), which were higher than those in Runl (VLR as 19 g-COD/L-day). The hydrolysis efficiency of organic solids (VSS) was about 45% in Run 1 better than the 32% in Run 2. The carbohydrate component of VKW was clearly degraded with the accumulation of butyrate, while the organic nitrogen component was converted to ammonia. The vegetable cellulose was degraded from 3.2 gL~(-1) and 3.6-1.8 and 3.2 gL~(-1) in Runs 1 and 2, respectively. In addition, the high concentration of lactate from the acidified VKW could be degraded completely both in Runs 1 and 2. According to the results of the time series profile in day 59, oil and grease were not degraded significantly. The removal of oil and grease was superficially caused by stacking on the wall, pipe, and propeller of the reactor, or by floating on the liquid surface. The 16S rDNA cloning library and sequence were applied for analyzing microbial communities. The dominant OTU was closely affiliated to Thermoanaerobacterium thermosacchar-olyticum, which is considered as the predominant hydrogen-producing bacteria. The OTUs closely related to Moorella thermoacetica and Clostridiaceae bacterium FH052 were considered as acetogenic bacterium and hydrogen-producing bacteria in the I-CSTR system.
机译:对间歇式连续搅拌釜反应器(I-CSTR)进行了蔬菜厨房垃圾(VKW)高温厌氧氢发酵的评估。厨房污泥堆肥丰富了种子污泥。由于季节性饮食习惯的不同,蔬菜厨房垃圾的质量不稳定,并且所有成分的变化都在20%至40%的范围内。 I-CSTR工艺是在不同的体积加载速率(VLR)和不同的VKW稀释浓度下进行的。实验2(VLR为28 g-COD I〜(-1)天〜(-1))的产氢速率和产率分别为1.0 L-H_2 L〜(-1)天〜(-1)和1.7 mmol- H_2 g-COC〜(-1)高于Runl(VLR为19 g-COD / L-day)。试验1中有机固体(VSS)的水解效率比试验2中的32%好约45%。随着丁酸的积累,VKW的碳水化合物组分明显被降解,而有机氮组分转化为氨。在实验1和实验2中,植物纤维素分别从3.2 gL〜(-1),3.6-1.8和3.2 gL〜(-1)降解。此外,在运行1和2中,来自酸化VKW的高浓度乳酸均可被完全降解。根据第59天的时间序列分析结果,油脂不会显着降解。油脂的去除表面上是由于堆积在反应器的壁,管道和螺旋桨上,或者是漂浮在液体表面上。 16S rDNA克隆文库和序列用于分析微生物群落。显性OTU与热解热厌氧杆菌密切相关,后者被认为是主要的产氢细菌。在I-CSTR系统中,与热产莫尔热菌和梭菌科细菌FH052密切相关的OTU被认为是产乙酸菌和产氢细菌。

著录项

  • 来源
    《International journal of hydrogen energy》 |2010年第24期|p.13458-13466|共9页
  • 作者单位

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, Taiwan;

    Department of Environmental Engineering, National Cheng Kung University No. 1, University Road, Tainan 701, ROC, 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

    vegetable kitchen waste; substrate hydrolysis; hydrogen production; 16S rDNA cloning library; and sequence; time series profile test;

    机译:蔬菜厨余;底物水解;制氢16S rDNA克隆文库;和顺序;时间序列轮廓测试;
  • 入库时间 2022-08-18 00:29:30

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