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提高橙皮废物和污水污泥厌氧共发酵中挥发性脂肪酸的产量:柠檬烯对功能菌群和微生物代谢特征的关键作用。

Upgrading volatile fatty acids production from anaerobic co-fermentation of orange peel waste and sewage sludge: Critical roles of limonene on functional consortia and microbial metabolic traits.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, Hohai University, Nanjing 210098, China; College of Environment, Hohai University, Nanjing 210098, China.

School of Energy and Environment, Anhui University of Technology, Ma'anshan 243000, China.

出版信息

Bioresour Technol. 2022 Oct;362:127773. doi: 10.1016/j.biortech.2022.127773. Epub 2022 Aug 10.

Abstract

Orange peel waste (OPW) and sewage sludge (SS) valorization for volatile fatty acids (VFAs) production from anaerobic co-fermentation are attractive and feasible. The highest VFAs reached 11996.3 mg COD/L within 10 d at the mass ratio (TS/TS) of 1:1, which was approximately 30-fold of that in sole SS fermentation. The OPW provided plenty of organic substrates and facilitated the fermentation processes by disintegrating SS structure and inhibiting methanogenesis due to the abundant limonene. Also, the OPW feeds reshaped the microbial community and enriched fermentative bacteria, especially those saccharolytic ones (i.e. Prevotella-7). The key genes involved in membrane transport (i.e. ptsG), glycolysis (i.e. pgk), pyruvate metabolism (i.e. ace), and fatty acid biosynthesis (i.e. accA), which are associated with VFAs biosynthesis, were up-regulated in OPW/SS reactors. Overall, it was the increase in bioavailable organic matter and functional microorganisms, and the simultaneous enhancement of metabolic activity that improved the efficient VFAs production.

摘要

从厌氧共发酵中利用橙皮废物 (OPW) 和污水污泥 (SS) 生产挥发性脂肪酸 (VFAs) 具有吸引力和可行性。在质量比(TS/TS)为 1:1 时,10 天内 VFAs 最高达到 11996.3mg COD/L,约为单独 SS 发酵的 30 倍。由于丰富的柠檬烯,OPW 提供了大量的有机基质,并通过破坏 SS 结构和抑制产甲烷作用促进了发酵过程。此外,OPW 进料重塑了微生物群落,富集了发酵细菌,特别是那些糖化细菌(即普雷沃特氏菌-7)。与 VFAs 生物合成相关的膜转运(即 ptsG)、糖酵解(即 pgk)、丙酮酸代谢(即 ace)和脂肪酸生物合成(即 accA)等关键基因在 OPW/SS 反应器中上调。总的来说,增加生物可利用的有机物和功能微生物,同时增强代谢活性,提高了高效 VFAs 的生产。

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