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Continuous biogenic hydrogen production from dilute acid pretreated algal hydrolysate using hybrid immobilized mixed consortia

机译:使用混合固定化混合财团从稀酸预处理的藻类水解物中连续生产生物氢

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This study investigated the bioconversion of dilute acid (2% H2SO4) pretreated red algae (Gelidium amansii) hydrolysate into H-2 by anaerobic fermentation in a continuous stirred tank reactor under mesophilic conditions using hybrid immobilized cells as microbial catalyst. Two different hydraulic retention times (HRT) of 24 h and 16 h with a feed concentration of 15 g/L hexose equivalent have been investigated over 85 days of operation to evaluate H2 production performance and stability of the continuous system. The highest hydrogen production rate (HPR) and hydrogen yield (HY) of 2.7 L/L/d and 1.3 mol/mol substrate hexose(added) was achieved at 24 h HRT, while further operation at 16 h HRT led to a significant drop in the hydrogen production with a HPR and HY values of 1.8 L/L/d and 0.7 mol/mol substrate hexoseadded, respectively. The bacterial community analysis characterized by 454 pyrosequencing revealed that the changes in HRT significantly influence the composition of the dominant microflora. At longer HRT (24 h), the phyla Firmicutes was abundant over 98%, whereas at shorter HRT (16 h), Proteobacteria being the dominant populations with 84%. These outcomes suggested that controlling appropriate HRT is prerequisite for efficient hydrogen production. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究调查了在常温条件下,使用杂化固定化细胞作为微生物催化剂,在连续搅拌釜反应器中,通过厌氧发酵,将稀酸(2%H2SO4)预处理的红藻(Gelidium amansii)水解物生物转化为H-2。在运行85天的过程中,研究了两种不同的水力停留时间(HRT),分别为24 h和16 h,进料浓度为15 g / L己糖当量,以评估H2的生产性能和连续系统的稳定性。在24 h HRT达到2.7 L / L / d和1.3 mol / mol底物己糖(添加)的最高氢气生产率(HPR)和氢气产率(HY),而在16 h HRT进一步操作导致显着下降在制氢过程中,加入的己糖的HPR和HY值分别为1.8 L / L / d和0.7 mol / mol。以454焦磷酸测序为特征的细菌群落分析表明,HRT的变化会显着影响优势菌群的组成。在更长的HRT(24 h)时,Firmicutes的菌种丰富,超过98%,而在更短的HRT(16 h),变形杆菌是主要种群,占84%。这些结果表明,控制适当的HRT是高效制氢的前提。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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