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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Performance and microbial characterization of two-stage caproate fermentation from fruit and vegetable waste via anaerobic microbial consortia
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Performance and microbial characterization of two-stage caproate fermentation from fruit and vegetable waste via anaerobic microbial consortia

机译:通过厌氧微生物混合从水果和蔬菜废物中两阶段冠状发酵的性能和微生物特征

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摘要

The regulation of two-stage caproate fermentation from fruit and vegetable waste (FVW) via anaerobic microbial consortia was investigated in this study. The results showed the highest caproate production achieved 14.9 g/L at the optimal inoculum to substrate ratio (ISR) of 2:1, ethanol to acid ratio (E/A) of 4:1, and pH of 7.5. The caproate yield and selectivity respectively reached 0.62 g/g and 80.8% (as COD). In acidification stage, an appropriate ISR provided a high conversion efficiency and more acetate formation, which was beneficial to caproate biosynthesis. In caproate production stage, chain elongation performance was sensitive to E/A and pH condition. Butyrate became the main by-product at low E/A or acidic conditions, while excessive ethanol or alkaline condition seriously suppressed substrate conversion. The caproate fermentation was dominated by Clostridium kluyveri. Furthermore, caproate formation was uncoupled with Clostridium kluyveri proliferation, which was mainly generated during the middle and late stages of growth.
机译:本研究研究了通过厌氧微生物聚类的水果和蔬菜废物(FVW)对两阶段冠状氟化物发酵的调节。结果表明,在最佳接种物中获得的最高葡萄干产量为2:1,乙醇的底物比(ISR),乙醇为4:1的酸比(E / A)和7.5的pH。葡萄干产率和选择性分别达到0.62g / g和80.8%(作为COD)。在酸化阶段,适当的ISR提供高转化效率和更乙酸盐的形成,这对丙二酸盐生物合成有益。在普通生产阶段,链伸长性能对E / A和pH条件敏感。丁酸盐在低E / A或酸性条件下成为主要副产物,而过量乙醇或碱性病症严重抑制底物转化。冠状葡萄干发酵由Clostridium Kluyveri主导。此外,冠状产物形成与梭菌性kluyveri增殖分开,主要在生长的中期和晚期阶段产生。

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