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Food waste fermentation in a leach bed reactor: Reactor performance, and microbial ecology and dynamics

机译:浸出床反应器中的食品废物发酵:反应堆性能,以及微生物生态和动力学

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Food waste fermentation was investigated in a leach bed reactor operated at acidic, neutral and alkaline conditions. Highest solids reduction of 87% was obtained at pH 7 in 14 days of reaction time with minimum mixing. The concentration of volatile fatty acids increased to 28.6 g COD/L under pH 7, while the highest butyric acid of 16 g COD/L was obtained at pH 6. Bacterial community structure was narrowed down to Bifidobacterium and Clostridium at pH 6, while Bacteroides and Dysgonomonas were identified as main players at both pH 7 and 8. Bacterial populations in the food residue generally reflected those in the leachate, but some bacteria were selectively enriched in the leachate or the food residue. Bacterial community dynamics suggested that biodegradable food waste was first fermented by one of dominant players (e.g., Clostridium) and the other degraded resistant dietary fibers later (e.g., Bifidobacterium, Bacteroides, Dysgonomonas).
机译:在酸性,中性和碱性条件下操作的浸出床反应器中研究了食品废物发酵。 在反应时间的14天,在反应时间的最小混合中获得最高固体的87%的87%。 在pH 7下挥发性脂肪酸的浓度增加至28.6g COD / L,而在pH6下获得16g COD / L的最高丁酸。细菌群落结构缩小到pH6的双歧杆菌和梭菌菌,同时诱饵 并且鉴定了脱尿组织在pH 7和8中的主要参与者。食物残留物中的细菌群通常反映了渗滤液中的细菌群体,但有些细菌在渗滤液或食物残留物中选择性富集。 细菌群体动态表明,可生物降解的食物废物首先被一个主导球员(例如,梭菌)和后面的其他降解的抗性膳食纤维发酵(例如,双歧杆菌,诱导的诱导剂,诱导剂。

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