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Metagenome changes in the mesophilic biogas-producing community during fermentation of the green alga Scenedesmus obliquus

机译:绿藻斜生藻发酵过程中嗜温沼气生产社区的基因组变化

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A microalgal biomass offers a potential alternative to the maize silage commonly used in biogas technology. In this study, photoautotrophically grown Scenedesmus obliquus was used as biogas substrate. This microalga has a low C/N ratio of 8.5 relative to the optimum 20-30. A significant increase in the ammonium ion content was not observed. The methane content of the biogas generated from Sc. obliquus proved to be higher than that from maize silage, but the specific biogas yield was lower. Semi-continuous steady biogas production lasted for 2 months. Because of the thick cell wall of Sc. obliquus, the biomass-degrading microorganisms require additional time to digest its biomass. The methane concentration in the biogas was also high, in co-digestion (i.e., 52-56%) as in alga-fed anaerobic digestion (i.e., 55-62%). These results may be related to the relative predominance of the order Clostridiales in co-digestion and to the more balanced C/N ratio of the mixed algal-maize biomass. Predominance of the order Methanosarcinales was observed in the domain Archaea, which supported the diversity of metabolic pathways in the process. (C) 2015 The Authors. Published by Elsevier B.V.
机译:微藻生物质提供了沼气技术中常用的玉米青贮饲料的潜在替代品。在这项研究中,将自养自生的斜生scenedesmus用作沼气基质。相对于最佳20-30,这种微藻的C / N比低,为8.5。没有观察到铵离子含量的显着增加。由Sc产生的沼气中的甲烷含量。斜率比玉米青贮高,但比沼气产量低。半连续稳定沼气生产持续了2个月。由于Sc的细胞壁较厚。倾斜地,降解生物质的微生物需要额外的时间来消化其生物质。与藻类厌氧消化法(即55-62%)一起消化时,沼气中的甲烷浓度也很高(即52-65%)。这些结果可能与梭菌中共消化的相对优势有关,也与混合藻-玉米生物质的C / N比更加平衡有关。在古细菌领域中观察到甲烷藻菌纲的优势,这支持了该过程中代谢途径的多样性。 (C)2015作者。由Elsevier B.V.发布

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