Key Laboratory of Agro-Forestry Environmental Processes and Ecological Regulation of Hainan Province, College of Ecology and Environment, Hainan University, 58 Renmin Avenue, Meilan District, Haikou 570228, PR China.
MOE Key Laboratory of Pollution Process and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, No. 94 Weijin Road, Nankai District, Tianjin 300071, PR China.
Bioresour Technol. 2022 Feb;346:126438. doi: 10.1016/j.biortech.2021.126438. Epub 2021 Nov 28.
Combined effect of zero valent iron (ZVI) and magnetite on semi-dry anaerobic digestion of swine manure was studied. Compared with control, the addition of 5 g/L ZVI, magnetite and their mixture (1:1 wt) increased the CH yield by 17.6%, 22.7% and 21.9%, respectively. The three additives improved CH production through altering the metabolism pathways, rather than improving the solid degradation efficiency. ZVI promoted interspecies hydrogen transfer (IHT) by enriching H-comsuming Methanolinea and acetate-oxidizing bacteria (Sedimentibacter and Clostridium). Magnetite enriched dissimilatory iron reduction bacteria (Acinetobacter) to accelerate organic hydrolysis and established direct interspecies electron transfer (DIET) by enriching Methanothrix and Methanospirillum. Key microorganisms relative to IHT (Clostridium) and DIET (Methanothrix and Methanospirillum) were simultaneously enriched with ZVI + magnetite, but they only showed an additive effect on methanogenesis, the lack of synergetic effect was attributable to the possible trade-off between IHT and DIET, or the little improvement effect of additives on substrate biodegradability.
研究了零价铁 (ZVI) 和磁铁矿对猪粪半干法厌氧消化的联合作用。与对照相比,添加 5 g/L 的 ZVI、磁铁矿和它们的混合物(1:1 wt)分别使 CH 产量增加了 17.6%、22.7%和 21.9%。这三种添加剂通过改变代谢途径而不是提高固体降解效率来提高 CH 的产量。ZVI 通过富集消耗 H 的 Methanolinea 和乙酸氧化菌(Sedimentibacter 和 Clostridium)促进种间氢转移(IHT)。磁铁矿富集异化铁还原菌(Acinetobacter)以加速有机水解,并通过富集 Methanothrix 和 Methanospirillum 建立直接种间电子转移(DIET)。与 IHT(Clostridium)和 DIET(Methanothrix 和 Methanospirillum)相关的关键微生物与 ZVI+磁铁矿同时被富集,但它们对产甲烷作用仅表现出相加效应,缺乏协同效应归因于 IHT 和 DIET 之间可能的权衡,或者添加剂对基质生物降解性的改善效果很小。