首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A long-term study on the effect of magnetite supplementation in continuous anaerobic digestion of dairy effluent - Enhancement in process performance and stability
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A long-term study on the effect of magnetite supplementation in continuous anaerobic digestion of dairy effluent - Enhancement in process performance and stability

机译:长期补充磁铁矿对奶牛粪便厌氧消化的影响-工艺性能和稳定性的提高

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摘要

Interspecies electron transfer (IET) between microbial populations with different functions is critical to stable anaerobic digestion. This study, in an attempt to facilitate IET, investigated the effect of magnetite supplementation on the biomethanation of dairy effluent in continuous mode. The magnetite-added reactor (RM) was significantly more resistant and resilient to process imbalance than the reactor run without magnetite addition (RC). RC showed unstable performance with repeated process upsets, but its performance improved to be comparable to that of RM after applying magnetite supplementation. Magnetite was particularly effective in stabilizing a build-up of propionic acid and therefore improving the process robustness and reliability. The enhanced biomethanation in terms of productivity and stability was attributed to the facilitated direct IET (DIET) between exoelectrogens and methanogens via magnetite particles. Methanosaeta was the predominant methanogen group in the experimental reactors and likely played a key role in both DIET-mediated carbon dioxide-reducing and aceticlastic methanogenesis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有不同功能的微生物种群之间的种间电子转移(IET)对于稳定的厌氧消化至关重要。为了促进IET,本研究以连续模式研究了磁铁矿补充剂对乳品废水生物甲烷化的影响。与没有添加磁铁矿(RC)的反应堆运行相比,添加磁铁矿的反应堆(RM)对过程失衡具有更大的抵抗力和弹性。 RC表现出不稳定的性能,并且反复出现工艺异常,但是在添加磁铁矿后,其性能可以提高到与RM相当。磁铁矿对于稳定丙酸的堆积特别有效,因此可以提高工艺的鲁棒性和可靠性。就生产率和稳定性而言,增强的生物甲烷化作用归因于外生电子和产甲烷菌之间通过磁铁矿颗粒促进的直接IET(DIET)。甲烷菌是实验反应器中主要的产甲烷菌类,并且可能在DIET介导的二氧化碳减少和乙酰弹性产甲烷中都起着关键作用。 (C)2016 Elsevier Ltd.保留所有权利。

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