首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improved methane production from sugarcane vinasse with filter cake in thermophilic UASB reactors, with predominance of Methanothermobacter and Methanosarcina archaea and Thermotogae bacteria
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Improved methane production from sugarcane vinasse with filter cake in thermophilic UASB reactors, with predominance of Methanothermobacter and Methanosarcina archaea and Thermotogae bacteria

机译:从嗜热uasb反应器中用含滤饼的甘蔗vinasse改善甲烷生产,含有甲烷热杆菌和甲蛋白酶archaea和thermotogae细菌的优势

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摘要

Biogas production from sugarcane vinasse has enormous economic, energy, and environmental management potential. However, methane production stability and biodigested vinasse quality remain key issues, requiring better nutrient and alkalinity availability, operational strategies, and knowledge of reactor microbiota. This study demonstrates increased methane production from vinasse through the use of sugarcane filter cake and improved effluent recirculation, with elevated organic loading rates (OLR) and good reactor stability. We used UASB reactors in a two-stage configuration, with OLRs up to 45 g COD L-1 d(-1), and obtained methane production as high as 3 L L-1 d(-1). Quantitative PCR indicated balanced amounts of bacteria and archaea in the sludge (10(9)-10(10) copies g(-1) VS), and of the predominant archaea orders, Methanobacteriales and Methanosarcinales (10(6)-10(8) copies g(-1) VS). 16S rDNA sequencing also indicated the thermophilic Thermotogae as the most abundant class of bacteria in the sludge.
机译:Sugarcane Vinasse的沼气生产具有巨大的经济,能源和环境管理潜力。然而,甲烷的生产稳定性和生物沸化的Vinasse质量仍然是关键问题,需要更好的营养和碱度可用性,操作策略和反应堆微生物群的知识。本研究证明通过使用甘蔗滤饼和改善的流出物再循环,从vinasse增加甲烷生产增加,有机加载率升高(OLR)和良好的反应器​​稳定性。我们在两级配置中使用了UASB反应器,OLR最高可达45克COD L-1 D(-1),并获得高达3L L-1 D(-1)的甲烷生产。定量PCR指出污泥中的细菌和古亚颗粒(10(9)-10(10)拷贝G(-1)vs),以及主要的古代序列,甲基杆菌和甲蛋白酶(10(6)-10(8 )复制g(-1)vs)。 16S RDNA测序还表明嗜热热源是污泥中最丰富的细菌。

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