首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Evaluation of system performance and microbial communities of a temperature-phased anaerobic digestion system treating dairy manure: Thermophilic digester operated at acidic pH
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Evaluation of system performance and microbial communities of a temperature-phased anaerobic digestion system treating dairy manure: Thermophilic digester operated at acidic pH

机译:温度相控厌氧消化系统处理奶牛粪便的系统性能和微生物群落的评估:在酸性pH下运行的嗜热消化池

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摘要

A temperature-phased anaerobic digestion system with the thermophilic digester acidified by acidogenesis products (referred to as AT-TPAD) was evaluated to treat high-strength dairy cattle manure at a 15-day retention time. Three temperatures (50, 55, and 60. °C) were tested on the thermophilic digester, and 50. °C was found to be the optimal temperature for overall performance of the AT-TPAD system, achieving 31% VS removal and 0.22. L. methane/g VS fed. The mesophilic digester contributed significantly more to the overall system performance than the thermophilic digester. The thermophilic and the mesophilic digesters had different microbial communities under all conditions, and both microbial communities exhibited dynamic changes in response to different conditions. Certain microbial groups were found significantly correlated with the system performance. Methanosarcina was the most important methanogen genus of the AT-TPAD system and its population abundance was inversely correlated with high concentrations of volatile fatty acids (VFA).
机译:评估了一种温度分级厌氧消化系统,该系统利用产酸产物酸化的嗜热消化池(称为AT-TPAD)在15天的保留时间内处理高强度奶牛粪便。在嗜热消化器上测试了三个温度(50、55和60.°C),发现50.°C是AT-TPAD系统整体性能的最佳温度,实现了31%VS去除和0.22。甲烷/克VS进料中温消化器比嗜热消化器对整个系统性能的贡献更大。嗜热和中温消化池在所有条件下都有不同的微生物群落,并且两种微生物群落均表现出对不同条件的响应的动态变化。发现某些微生物组与系统性能显着相关。甲烷八叠球菌是AT-TPAD系统中最重要的甲烷菌属,其种群数量与高浓度的挥发性脂肪酸(VFA)成反比。

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