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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Microbial community dynamics and process performance of a full-scale two-stage anaerobic digester under the replacement from energy crop to poultry manure
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Microbial community dynamics and process performance of a full-scale two-stage anaerobic digester under the replacement from energy crop to poultry manure

机译:微生物群落动态和过程性能在替代能量作物到家禽粪便中的全级两级厌氧蒸煮器

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BACKGROUND This study assessed the composition and dynamics of the bacterial and archaeal communities in a full-scale two-stage anaerobic digester over five months. The plant was fed on a variable mixture of feedstock, in which the energy crops were replaced with poultry manure/litter (from 1.6% to 7.5%) to reduce the operational costs. RESULTS The elevated concentration of ammonia in the digester did not hamper biogas production and its concentration of methane. The low level of acetate, butyrate and propionate in the methanogenesis phase indicated a strong activity of acetotrophic methanogens. PCR-DGGE and sequencing have demonstrated that the stability of the volatile fatty acid distribution concurred with low level of population shifts as shown by the moving windows analysis. Nevertheless, PCoA analyses revealed that the variation in the digester alimentation and the carbon:nitrogen (C:N) ratio had a key role in assembly the bacterial and archaeal communities. The high ammonia level favoured the growth of Caldicoprobacteraceae and Syntrophomonadaceae, whereas dominant archaea detected belonged to the family of Methanosarcinaceae. CONCLUSION Cheap and readily available N-rich feedstock could be used safely to decrease the costs of the anaerobic digestion process. (c) 2019 Society of Chemical Industry
机译:背景技术本研究评估了在五个月内全规模的两级厌氧消化器中细菌和古群落的组成和动力学。将该植物送入原料的可变混合物中,其中能量作物用家禽粪便/垃圾(从1.6%到7.5%)取代,以降低运营成本。结果蒸煮器中氨的浓度升高并不妨碍沼气产量及其甲烷浓度。在甲烷发生相中乙酸盐,丁酸盐和丙酸盐的低水平表明了肺促甲氧烷的强活动。 PCR-DGGE和测序已经证明,挥发性脂肪酸分布的稳定性,其具有低水平的群体移位,如移动窗口分析所示。然而,PCOA分析表明,消化不检者和碳的变化:氮气(C:N)的比例在组装细菌和古群落中具有关键作用。高氨水量赞成钙霉菌痤疮和Syntrophomonadaceae的生长,而检测到的占占甲蛋白酶家族的占优势古痤疮。结论廉价且易于使用的富含N-Rich FeipStock可以安全使用,降低厌氧消化过程的成本。 (c)2019年化学工业协会

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