首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous biogas and biogas slurry production from co-digestion of pig manure and corn straw: Performance optimization and microbial community shift
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Simultaneous biogas and biogas slurry production from co-digestion of pig manure and corn straw: Performance optimization and microbial community shift

机译:同时沼气和沼气泥浆生产从猪粪和玉米秸秆的共消化:性能优化和微生物群落转变

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摘要

Anaerobic co-digestion (AcoD) is proved as an effective approach to solving a bottleneck problem of the low biogas yield in agricultural biomass waste treatment with anaerobic digestion (AD) technology. The present study investigated the effect of C/N radio, organic loading rate (OLR) and total solids (TS) contents on reactor performance in AcoD of pig manure and corn straw for simultaneous biogas and biogas slurry production. It was found that the highest biogas production was obtained at C/N ratio of 25, while the best biogas slurry performance was achieved at C/N ratio of 35. And high OLR and TS resulted in good performances in both biogas production and biogas slurry. At last, the microbial community analysis suggested that Bacteroidetes played a significant role in AcoD process. Acetoclastic methanogenesis was the main pathway for methane production in the stable system. And changing operational parameters could transform and shift the microbial community.
机译:证明了厌氧共消化(ACOD)是一种有效的方法来解决与厌氧消化(AD)技术的农业生物质废物处理中低沼气产量的瓶颈问题。 本研究研究了C / N无线电,有机加载速率(OLR)和总固体(TS)含量对猪粪和玉米秸秆的反应器性能的影响,同时沼气和沼气浆料生产。 结果发现,在25的C / N比下获得最高的沼气产量,而最佳沼气浆料性能在35℃/ N的比例下实现。和高OLR和TS在沼气生产和沼气中产生良好的性能 。 最后,微生物群落分析表明,Bacteropetes在ACOD过程中发挥了重要作用。 乙内腔甲烷化是稳定体系中甲烷生产的主要途径。 并且改变操作参数可以转变和转移微生物群落。

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