Magnetite-boosted syntrophic conversion of acetate to methane during thermophilic anaerobic digestion

Zi-Fan Wu, Zhao-Long Li, Qing-Hua Liu, Zhi-Man Yang
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Abstract

Using a batch thermophilic anaerobic system established with 60 mL serum bottles, the mechanism on how microbial enrichments obtained from magnetite-amended paddy soil via repeated batch cultivation affected methane production from acetate was investigated. Magnetite-amended enrichments (MAEs) can improve the methane production rate rather than the methane yield. Compared with magnetite-unamended enrichments, the methane production rate in MAE was improved by 50%, concomitant with the pronounced electrochemical response, high electron transfer capacity, and fast acetate degradation. The promoting effects might be ascribed to direct interspecies electron transfer facilitated by magnetite, where magnetite might function as electron conduits to link the acetate oxidizers (Anaerolineaceae and Peptococcaceae) with methanogens (Methanosarcinaceae). The findings demonstrated the potential application of MAE for boosting methanogenic performance during thermophilic anaerobic digestion.
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嗜热厌氧消化过程中磁铁矿促进醋酸盐向甲烷的合成转化
利用 60 毫升血清瓶建立的批量嗜热厌氧系统,研究了通过重复批量培养从磁铁矿改良的稻田土壤中获得的微生物富集物如何影响醋酸甲烷生产的机制。磁铁矿改良富集物(MAEs)可以提高甲烷生产率,而不是甲烷产量。与未添加磁铁矿的富集物相比,MAE 的甲烷生产率提高了 50%,同时还具有明显的电化学反应、高电子传递能力和快速的醋酸盐降解能力。这些促进作用可能是由于磁铁矿促进了种间直接电子传递,磁铁矿可作为电子通道将醋酸盐氧化剂(Anaerolineaceae 和 Peptococcaceae)与甲烷菌(Methanosarcinaceae)连接起来。研究结果表明,在嗜热厌氧消化过程中,MAE 在提高产甲烷性能方面具有潜在的应用价值。
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