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首页> 外文期刊>Energy Sources >The Effect of Isolated Mixed Microbial Cultures on the Reduction of Carbon Dioxide Into Methane During Biogas Production
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The Effect of Isolated Mixed Microbial Cultures on the Reduction of Carbon Dioxide Into Methane During Biogas Production

机译:分离的混合微生物培养物对沼气生产中二氧化碳还原为甲烷的影响

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摘要

This work describes the effect of mixed culture on reduction of carbon dioxide into methane during biogas production. Various mixed cultures, such as IMS, IWT, IRP, and IMW, were isolated from marshy soil, decaying woody tissue, rice paddy soil, and mixture of activated sludge from municipal waste treatment plant along with a cow dung-based biogas plant (IMWj), respectively, and separately grown in cow dung slurry. Combinations of these mixed inocula were used for biogas production at 35°C in a 1.5 L batch reactor. A relatively high average yield of methane (0.345 Lg~l volatile solid), low average yield of carbon dioxide (0.131 gL~'VS), and maximum 72% methane and 23% carbon dioxide content in biogas during 25-30 days was obtained with inoculum IRP. Whereas a corresponding average yield of methane (0.313, 0.315, 0.308 Lg~'VS), carbon dioxide (0.164, 0.158, and 0.167 Lg~lVS), and average methane content (70, 68, and 68% during 25-30 d) were observed with inocula IMS, IWT, and IMW/, respectively. Experimental results found that a 21.5% reduction in the average yield of carbon dioxide along with a 12% increase in average yield of methane and 4% increase in methane content (25-30 d) in biogas was observed with IRP, whereas a 1.8 and 5.4% reduction of carbon dioxide was found with a small increase in average methane yield 2 and 2.3% and in methane content 2% and no change (25-30 d) was observed with IMS and IWT mixed cultures as compared to IMW; inoculum. These results of the experiments indicate that mixed microbial culture (IRP) can be used for improved quality biogas (72% methane and 23% carbon dioxide) production.
机译:这项工作描述了混合培养对沼气生产过程中二氧化碳还原为甲烷的影响。从沼泽土壤,腐烂的木质组织,稻田土壤以及市政废物处理厂和基于牛粪的沼气厂(IMWj)混合的活性污泥中分离出各种混合培养物,例如IMS,IWT,IRP和IMW )分别在牛粪浆中分别生长。这些混合接种物的组合用于在1.5 L间歇式反应器中于35°C下生产沼气。在25至30天内,获得了相对较高的甲烷平均产量(0.345 Lg〜l挥发性固体),较低的二氧化碳平均产量(0.131 gL〜'VS)以及沼气中最大的72%的甲烷和23%的二氧化碳含量与接种IRP。而在25至30 d期间,相应的甲烷平均产量(0.313、0.315、0.308 Lg〜VS),二氧化碳(0.164、0.158和0.167 Lg〜VS)和平均甲烷含量(70、68和68%) )分别用接种IMS,IWT和IMW /观察到。实验结果发现,使用IRP可以观察到沼气中二氧化碳的平均产率降低21.5%,甲烷的平均产率增加12%,甲烷含量增加4%(25-30 d),而1.8和与IMW相比,IMS和IWT混合培养物发现二氧化碳减少了5.4%,平均甲烷产率2和2.3%有所增加,甲烷含量为2%,并且未观察到变化(25-30 d);接种物。这些实验结果表明,混合微生物培养(IRP)可用于提高沼气质量(72%的甲烷和23%的二氧化碳)。

著录项

  • 来源
    《Energy Sources》 |2011年第12期|p.908-919|共12页
  • 作者

    R. SINGH; S. K. MANDAL;

  • 作者单位

    Department of Biochemical Engineering and Food Technology, HarcourtButler Technological Institute, Kanpur, India;

    Department of Biochemical Engineering and Food Technology, HarcourtButler Technological Institute, Kanpur, India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    activated sludge; biogas; co_2 reduction; methane; mixed inocula;

    机译:活性污泥沼气CO_2还原;甲烷混合接种;

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