首页> 外文期刊>Environmental Science & Technology >Enrichment Versus Bioaugmentation-Microbiological Production of Caproate from Mixed Carbon Sources by Mixed Bacterial Culture and Clostridium kluyveri
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Enrichment Versus Bioaugmentation-Microbiological Production of Caproate from Mixed Carbon Sources by Mixed Bacterial Culture and Clostridium kluyveri

机译:混合细菌培养和克鲁维梭菌从混合碳源的富集与生物强化-微生物生产己酸酯

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摘要

Chain elongation is a process that produces medium chain fatty acids such as caproic acid, which is one of the promising products of the carboxylate platform. This study analyzed the impact of bioaugmentation of heat-treated anaerobic digester sludge with Clostridium kluyveri (AS + Ck) on caproic acid production from a mixed substrate (lactose, lactate, acetate, and ethanol). It was compared with processes initiated with non-augmented heat-treated anaerobic digester sludge (AS) and monoculture of C. kluyveri (Ck). Moreover, stability of the chain elongation process was evaluated by performing repeated batch experiments. All bacterial cultures demonstrated efficient caproate production in the first batch cycle. After 18 days, caproate concentration reached 9.06 ± 0.43, 7.86 ± 038, and 7.67 ± 0.37 g/ L for AS, Ck, and AS + Ck cultures, respectively. In the second cycle, AS microbiome was enriched toward caproate production and showed the highest caproate concentration of 11.44 ± 0.47 g/L. On the other hand, bioaugmented culture showed the lowest caproate production in the second cycle (4.10 ± 0.30 g/L). Microbiome analysis in both AS and AS + Ck culture samples indicated strong enrichment toward the anaerobic order of Clostridia. Strains belonging to genera Sporanaerobacter, Paraclostridium, Haloimpatiens, Clostridium, and Bacillus were dominating in the bioreactors.
机译:链延长是产生中链脂肪酸如己酸的过程,己酸是羧酸酯平台的有前途的产物之一。这项研究分析了用克鲁氏梭菌(AS + Ck)对热处理厌氧消化池污泥进行生物强化对混合底物(乳糖,乳酸,乙酸和乙醇)生产己酸的影响。将其与以非增强型热处理厌氧消化器污泥(AS)和克鲁维假单胞菌(Ck)单一培养启动的过程进行了比较。此外,通过进行重复的批处理实验来评估链延长过程的稳定性。在第一批循环中,所有细菌培养物均显示出有效的己酸产生。 18天后,对于AS,Ck和AS + Ck培养物,己酸​​根浓度分别达到9.06±0.43、7.86±038和7.67±0.37 g / L。在第二个循环中,AS微生物组朝着己酸的方向富集,并显示出最高的己酸根浓度为11.44±0.47 g / L。另一方面,生物强化培养在第二个循环中己酸产量最低(4.10±0.30 g / L)。在AS和AS + Ck培养样品中进行的微生物组分析表明,梭状芽孢杆菌的厌氧有很强的富集性。在生物反应器中,属于芽孢杆菌属,副梭菌属,嗜盐杆菌属,梭菌属和芽孢杆菌属的菌株占主导。

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  • 来源
    《Environmental Science & Technology》 |2020年第9期|5864-5873|共10页
  • 作者单位

    Faculty of Chemistry Adam Mickiewicz University 61-614 Poznan Poland;

    Water Supply and Bioeconomy Division Faculty of Environmental Engineering and Energy Poznan University of Technology 60-965 Poznan Poland;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 05:27:33

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