使用依必根沼气添加剂对全规模沼气装置微生物群及性能的影响

Methane Pub Date : 2023-09-03 DOI:10.3390/methane2030022
Themistoklis Sfetsas, Manthos Panou, A. Chioti, Nikoleta Prokopidou, Ioanna Dalla
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引用次数: 1

摘要

利用有机废物生产沼气是一种很有前途的可再生能源,但实现最佳生产和蒸煮器稳定性可能具有挑战性。本研究调查了Evogen微生物添加剂对两个沼气厂(BG01和BG02)的沼气生产和沼气池状况的影响。对微生物丰度和理化参数进行分析以评估效果。结果表明,Evogen处理的消化池中微生物群落发生了明显变化,产甲烷古菌和水解菌的丰度增加,表明厌氧消化得到了改善。Evogen的补充对蒸煮器的性能产生了积极影响,更高的碱度缓冲能力(FOS/TAC比)证明了这一点,表明酸化和甲烷生成增强,总固体和挥发性固体减少,表明有机物降解得到改善。挥发性脂肪酸(VFAs)分析表明,Evogen处理的沼气池表现出显著更高的沼气产量和改善的工艺稳定性。厚壁菌门、增效菌门、拟变形杆菌门和放线菌门的优势突出了它们在底物降解和VFA产生中的作用。这些发现有助于优化沼气生产系统和了解厌氧消化器内复杂的微生物相互作用。Evogen的加入影响了微生物群落的组成和动力学,可能改变底物利用、代谢相互作用和整体群落结构。
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The Effects of Using Evogen Biogas Additive on the Microbiome and Performance of Full-Scale Biogas Plant
Biogas production from organic waste is a promising renewable energy source, but achieving optimal production and digester stability can be challenging. This study investigated the impact of the Evogen microbial additive on biogas production and digester status in two biogas plants (BG01 and BG02). Microbial abundance and physicochemical parameters were analyzed to assess the effects. The results show distinct microbial community shifts in Evogen-treated digesters, with increased abundance of methanogenic archaea and hydrolytic bacteria, indicating improved anaerobic digestion. Evogen supplementation positively influenced digester performance, as evidenced by higher alkalinity buffer capacity (FOS/TAC ratios), indicating enhanced acidification and methanogenesis, along with reductions in total solids and volatile solids, demonstrating improved organic matter degradation. Evogen-treated digesters exhibited significantly higher biogas production and improved process stability, as indicated by volatile fatty acids (VFAs) profiling. The dominance of Firmicutes, Synergistetes, Proteolytic Bacteroidetes and Actinobacteria highlighted their roles in substrate degradation and VFA production. The findings contribute to optimizing biogas production systems and understanding complex microbial interactions within anaerobic digesters. The addition of Evogen influenced microbial community composition and dynamics, potentially altering substrate utilization, metabolic interactions and overall community structure.
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