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Insights into biomethane production and microbial community succession during semi-continuous anaerobic digestion of waste cooking oil under different organic loading rates

机译:在不同有机负载率下半废弃厌氧消化油中生物甲烷产生和微生物群落演替的见解

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摘要

High content of lipids in food waste could restrict digestion rate and give rise to the accumulation of long chain fatty acids in anaerobic digester. In the present study, using waste cooking oil skimmed from food waste as the sole carbon source, the effect of organic loading rate (OLR) on the methane production and microbial community dynamics were well investigated. Results showed that stable biomethane production was obtained at an organic loading rate of 0.5–1.5 g VS L−1 days−1. The specific biogas/methane yield values at OLR of 1.0 were 1.44 ± 0.15 and 0.98 ± 0.11 L g VS−1, respectively. The amplicon pyrosequencing revealed the distinct microbial succession in waste cooking oil AD reactors. Acetoclastic methanogens belonging to the genus Methanosaeta were the most dominant archaea, while the genera Syntrophomona, Anaerovibrio and Synergistaceae were the most common bacteria during AD process. Furthermore, redundancy analysis indicated that OLR showed more significant effect on the bacterial communities than that of archaeal communities. Additionally, whether the OLR of lipids increased had slight influence on the acetate fermentation pathway.
机译:餐厨垃圾中脂质含量高会限制消化速率,并导致厌氧消化池中长链脂肪酸的积累。在本研究中,以从食物垃圾中撇取的废食用油为唯一碳源,对有机负荷率(OLR)对甲烷生产和微生物群落动态的影响进行了深入研究。结果表明,在有机负荷率为0.5–1.5 g VS L -1 -1 的条件下,可获得稳定的生物甲烷生产。 OLR为1.0时的沼气/甲烷比产率分别为1.44±0.15和0.98±0.11L g VS -1 。扩增子焦磷酸测序揭示了废弃食用油AD反应器中独特的微生物演替。属于甲烷菌属的破伤风产甲烷菌是最主要的古细菌,而在AD过程中,Syntrophomona,Anaerovibrio和Synergistaceae属是最常见的细菌。此外,冗余分析表明,OLR对细菌群落的影响比古细菌群落更大。此外,脂质的OLR是否增加对乙酸盐发酵途径有轻微影响。

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