School of Energy and Environment, Key Laboratory of Clean Energy (Liaoning Province), Shenyang Aerospace University, No. 37 Daoyi South Avenue, Shenyang 110136, PR China.
School of Energy and Environment, Key Laboratory of Clean Energy (Liaoning Province), Shenyang Aerospace University, No. 37 Daoyi South Avenue, Shenyang 110136, PR China.
Bioresour Technol. 2020 Nov;315:123796. doi: 10.1016/j.biortech.2020.123796. Epub 2020 Jul 9.
Role of trace elements (TEs) in long-term anaerobic digestion of food waste (FW) under fixed and stepwise increasing loads and under early and medium volatile fatty acid (VFA) inhibition was investigated. Digesters under high load suffered VFA inhibition. Mismatch between scarce TEs in FW and essential TEs for sustainable methanogenesis suppressed Methanosaeta causing blocked aceticlastic methanogenesis and shift to CO reduction pathway, as indicated by decreased Methanosaeta from above 70.0% to below 42.0% and enriched hydrogenotrophic methanogens (Methanospirillum, Methanoculleus, Methanobacterium) from below 15.0% to above 53.6%. Dual stresses of VFA inhibition and TEs deficiency resulted in recession of syntrophic Bacteria Syntrophomonadaceae. Conversely, digesters with TEs supplementation maintained high activity of Syntrophomonadaceae and ensured predominant aceticlastic methanogenesis and powerful methanogenic community functions. Early and medium VFA inhibition were reversed by TEs supplementation or coupling with pH adjustment by stimulating VFAs degradation via syntrophic metabolism and unclogging acetate conversion via aceticlastic methanogenesis.
研究了微量元素 (TEs) 在固定和逐步增加负荷下以及早期和中期挥发性脂肪酸 (VFA) 抑制下对食物垃圾 (FW) 长期厌氧消化的作用。高负荷消化器受到 VFA 抑制。FW 中稀缺的 TEs 与可持续产甲烷所需的必需 TEs 之间不匹配,抑制了 Methanosaeta,导致乙酸分解产甲烷受阻,转向 CO 还原途径,Methanosaeta 从 70.0%以上降至 42.0%以下,氢营养型产甲烷菌(Methanospirillum、Methanoculleus、Methanobacterium)从 15.0%以下增加到 53.6%以上。VFA 抑制和 TEs 缺乏的双重压力导致共栖菌Syntrophomonadaceae 的衰退。相反,添加 TEs 的消化器保持了 Syntrophomonadaceae 的高活性,确保了主要的乙酸分解产甲烷和强大的产甲烷菌群功能。通过共代谢促进 VFAs 降解和通过乙酸分解产甲烷疏通乙酸转化,TEs 补充或与 pH 调节耦合可逆转早期和中期 VFA 抑制。