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Effect of organic loading on a novel hydrogen bioreactor

机译:有机载量对新型氢生物反应器的影响

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摘要

This study investigated the impact of six organic loading rates (OLR) ranging from 6.5 gCOD/L-d to 206 gCOD/L-d on the performance of a novel integrated biohydrogen reactor clarifier systems (IBRCSs) comprised a continuously stirred reactor (CSTR) for biological hydrogen production, followed by an uncovered gravity settler for decoupling of solids retention time (SRT) from hydraulic retention time (HRT). The system was able to maintain a high molar hydrogen yield of 2.8 mol H_2/mol glucose at OLR ranging from 6.5 to 103 gCOD/L-d, but dropped precipitously to approximately 1.2 and 1.1 mol H_2/mol glucose for the OLRs of 154 and 206 gCOD/L-d, respectively. The optimum OLR at HRT of 8 h for maximizing both hydrogen molar yield and volumetric hydrogen production was 103 gCOD/L-d. A positive statistical correlation was observed between the molar hydrogen production and the molar acetate-to-butyrate ratio. Biomass yield correlated negatively with hydrogen yield, although not linearly. Analyzing the food-to-microorganisms (F/M) data in this study and others revealed that, both molar hydrogen yields and biomass specific hydrogen rates peaked at 2.8 mol H_2/mol glucose and 2.3 L/gVSS-d at F/M ratios ranging from 4.4 to 6.4 gCOD/gVSS-d. Microbial community analysis for OLRs of 6.5 and 25.7 gCOD/L-d showed the predominance of hydrogen producers such as Clostridium ace-tobutyricum, Klebsiella pneumonia, Clostridium butyricum, Clostridium pasteurianum. While at extremely high OLRs of 154 and 206 gCOD/L-d, a microbial shift was clearly evident due to the coexistence of the non-hydrogen producers such as Lactococcus sp. and Pseudomonas sp.
机译:这项研究调查了从6.5 gCOD / Ld到206 gCOD / Ld的6种有机负载速率(OLR)对新型集成生物氢反应器澄清器系统(IBRCSs)的性能的影响,该系统包括用于生物制氢的连续搅拌反应器(CSTR) ,然后是一个无盖的重力沉降器,用于将固体保留时间(SRT)与水力保留时间(HRT)分离。该系统能够在6.5至103 gCOD / Ld的OLR下维持2.8 mol H_2 / mol葡萄糖的高摩尔氢产率,但是对于154和206 gCOD的OLR则急剧下降至大约1.2和1.1 mol H_2 / mol葡萄糖。 / Ld,分别。 HRT为8 h时,氢摩尔产量和氢气产量均达到最大的最佳OLR为103 gCOD / L-d。在氢的摩尔产生量与乙酸根与丁酸根的摩尔比之间观察到正统计相关性。生物量产率与氢产率负相关,尽管不是线性的。分析本研究和其他研究中的食物与微生物(F / M)数据后发现,摩尔氢产率和生物量比氢率均以F / M比为2.8 mol H_2 / mol葡萄糖和2.3 L / gVSS-d达到峰值。范围从4.4到6.4 gCOD / gVSS-d。对6.5和25.7 gCOD / L-d的OLR进行的微生物群落分析显示,产氢的主要物质为丙酮丁酸梭菌,肺炎克雷伯菌,丁酸梭菌,巴氏梭菌。在极高的OLR值154和206 gCOD / L-d的情况下,由于非氢气生产者(如Lactococcus sp。)的共存,微生物明显转移。和假单胞菌

著录项

  • 来源
    《International journal of hydrogen energy》 |2010年第1期|81-92|共12页
  • 作者单位

    Department of Civil Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada;

    rnDepartment of Civil Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada;

    rnDepartment of Civil Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada;

    rnDepartment of Civil Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada;

    rnDepartment of Chemical and Biochemical Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada;

  • 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

    biological hydrogen production; organic loading; food-to-microorganisms ratio; PCR-DGGE;

    机译:生物制氢有机负荷;食物与微生物的比例;聚合酶链反应;
  • 入库时间 2022-08-18 00:29:13

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