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Evaluation of hidden H_2-consuming pathways using metabolic flux-based analysis for a fermentative side-stream dynamic membrane bioreactor using untreated seed sludge

机译:利用未处理籽泥的发酵侧流动态膜生物反应器评估利用基于代谢通量的分析的隐性H_2消耗途径

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This study investigates the performance and hidden hydrogen consuming metabolic pathways of a fermentative side stream dynamic membrane (DM) bioreactor using flux balance analysis (FBA). The bioreactor was inoculated with untreated methanogenic seed sludge. It was found that fouling rate aggravated with increasing COD concentration (10-30 g/L) and was positively correlated to it rather than to the applied solid flux on the DM module. Due to increased fouling rate the hydraulic retention time (HRT) could not be reduced less than 0.82 +/- 0.02 d. An increase in the organic loading rate (OLR) led to an increase in H-2 yield from 0.01 to 0.76 mol H-2/mol of sucrose. FBA revealed that homoacetogenesis was the main H-2-consuming pathway at lower OLRs (corresponding to 10 and 15 g COD/L), while for the OLR corresponding to 30 g COD/L, homoacetogens were suppressed. More importantly, caproic acid production pathway was identified for the first time as another H-2-consuming pathway at high OLR which was not significant at lower OLRs during fermentative dynamic membrane bioreactor operations. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究研究了使用通量平衡分析(FBA)的发酵侧流动态膜(DM)生物反应器的性能和隐藏氢气消耗代谢途径。用未处理的甲状腺种子污泥接种生物反应器。发现污染浓度(10-30g / L)增加的污垢率加剧并与其呈正相关,而不是在DM模块上的施加的固体通量。由于污垢率增加,液压保留时间(HRT)不能降低小于0.82 +/- 0.02 d。有机加载速率(OLR)的增加导致H-2产率的增加从0.01至0.76mol H-2 / mol的蔗糖。 FBA揭示了均乙酰胺是下OLRS(对应于10和15g COD / L)的主要H-2消耗途径,而对于对应于30g COD / L的OLR,抑制了均缩伤剂。更重要的是,首次鉴定己酸生产途径,作为在发酵动态膜生物反应器操作期间在低OLR下在低OLR中没有显着的H-2消耗途径。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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