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Exploring optimal conditions for thermophilic fermentative hydrogen production from cassava stillage

机译:探索木薯釜馏物高温发酵产氢的最佳条件

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摘要

This study investigated the effects of seed sludges, alkalinity and HRT on the thermophilic fermentative hydrogen production from cassava stillage. Five different kinds of sludges were used as inocula without any pretreatment. Though batch experiments showed that mesophilic anaerobic sludge was the best inoculum, the hydrogen yields with different seed sludges were quite similar in continuous experiments in the range of 82.9-92.3 ml H_2/ gVS without significant differences which could be attributed to the establishment of Uncultured Thermoanaerobacteriaceae bacterium-dominant microbial communities in all reactors. It is indicated that results obtained from batch experiments are not consistent with those from continuous experiments and all the tested seed sludges are good sources for continuous thermophilic hydrogen production from cassava stillage. The influent alkalinity of 6 g NaHCO_3/L and HRT 24 h were optimal for hydrogen production with hydrogen yield of 76 ml H_2/gVS and hydrogen production rate of 3215 ml H_2/L/d. Butyrate was the predominant metabolite in all experiments. With the increase in alkalinity of more than 6 g/L, the concentration of VFA/ethanol increased while hydrogen yield decreased due to the higher concentration of acetate and propionate. The decrease in HRT resulted in the higher hydrogen production rate but lower hydrogen yield. Variation of hydrogen yields were quite correlated with butyrate/acetate (B/A) ratio with different influent alkalinities, however, butyrate was important parameter to justify the hydrogen yields with various HRTs.
机译:这项研究调查了种子污泥,碱度和HRT对木薯釜馏物嗜热发酵产氢的影响。无需任何预处理即可将五种不同的污泥用作接种物。虽然分批实验表明中温厌氧污泥是最好的接种物,但在连续实验中,不同种子污泥的氢气产量在82.9-92.3 ml H_2 / gVS范围内非常相似,没有显着差异,这可以归因于未培养的热厌氧菌的建立所有反应器中以细菌为主的微生物群落。结果表明,分批实验得到的结果与连续实验得到的结果不一致,所有测试的污泥都是从木薯釜馏物连续生产嗜热氢的良好来源。 6 g NaHCO_3 / L和HRT 24 h的进水碱度最适合制氢,制氢量为76 ml H_2 / gVS,制氢速率为3215 ml H_2 / L / d。丁酸盐是所有实验中的主要代谢产物。随着碱度的增加超过6 g / L,由于乙酸盐和丙酸盐的浓度较高,VFA /乙醇的浓度增加,而氢产率降低。 HRT的降低导致较高的氢气产生速率,但氢气产量较低。氢气产率的变化与进水碱度不同时的丁酸/乙酸盐(B / A)比率有很大的相关性,但是,丁酸盐是证明各种HRT氢气产量合理的重要参数。

著录项

  • 来源
    《International journal of hydrogen energy》 |2010年第12期|P.6161-6169|共9页
  • 作者单位

    Key Laboratory of Yangtze River Water Environment, Ministry (Tongji University), Siping Road no 1239, Shanghai 200092, PR China;

    rnKey Laboratory of Yangtze River Water Environment, Ministry (Tongji University), Siping Road no 1239, Shanghai 200092, PR China UNEP-Tongji University Institute of Environment for Sustainable Development, Siping Road no 1239, Shanghai 200092, PR China;

    rnKey Laboratory of Yangtze River Water Environment, Ministry (Tongji University), Siping Road no 1239, Shanghai 200092, PR China;

    rnKey Laboratory of Yangtze River Water Environment, Ministry (Tongji University), Siping Road no 1239, Shanghai 200092, PR China;

    rnKey Laboratory of Yangtze River Water Environment, Ministry (Tongji University), Siping Road no 1239, Shanghai 200092, PR China UNEP-Tongji University Institute of Environment for Sustainable Development, Siping Road no 1239, Shanghai 200092, PR 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

    thermophilic hydrogen production; cassava stillage; seed sludge; alkalinity; Hydraulic retention time (HRT);

    机译:嗜氢制氢;木薯釜馏物种子污泥碱度液压停留时间(HRT);
  • 入库时间 2022-08-18 00:29:20

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