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Improvement of acidogenic fermentation using an acclimatized microbiome

机译:使用适应性微生物组改善产酸发酵

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Mixed fruit wastes (FW) are considered valuable organic wastes due to their polysaccharidic content. This study describes utilization of an effective acclimatized microbiome (AM) for enhanced conversion of FW into hydrogen and various value-added byproducts. Microbial acclimatization was used to accelerate two processes, hydrogenogenic acidogenesis and carboxylic chain elongation, which simultaneously produced hydrogen and C4-C7 carboxylates. AM showed 77 mL g(-1) VS of hydrogen yield with 31% higher specific hydrogen production potential (SHPP) compared to 55 mL g(-1) VS with an unacclimatized microbiome (UM). Production of carboxylates was also 19% higher in the AM. Taxonomic analysis of the microbiome revealed the microbial shift to Firmicutes as the most dominant phylum (99%). Clostridium, Hydrogenoanaerobacterium, Paraclostridium, Anaerosalibacter, Tissierella, and Tepidanaerobacter were preeminent genera in the AM, confirming their predominant role in dual processes. Thus, utilization of an AM enhanced the hydrogenogenic acidogenic fermentation of FW with simultaneous carboxylic chain elongation, yielding high-value products. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:混合果渣(FW)由于其多糖含量高而被认为是有价值的有机废物。这项研究描述了如何利用有效的适应性微生物组(AM)来增强FW向氢和各种增值副产物的转化。微生物驯化被用来加速两个过程,即产氢酸生成和羧基链延长,这两个过程同时产生了氢和C4-C7羧酸盐。 AM显示的氢气产量为77 mL g(-1)VS,比未驯化的微生物组(UM)的55 mL g(-1)VS高31%的比氢气产生潜能(SHPP)。在AM中,羧酸盐的产量也提高了19%。微生物组的分类学分析显示,微生物以最主要的门(99%)转移到了Firmicutes。梭状芽胞杆菌,氢厌氧杆菌,副梭菌,厌氧唾液杆菌,蒂氏杆菌和温杆菌属是AM中的重要属,证实了它们在双重过程中的主要作用。因此,利用AM增强了FW的产氢酸发酵,同时使羧基链延长,从而产生了高价值的产品。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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