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Bacterial community analysis in upflow multilayer anaerobic reactor (UMAR) treating high-solids organic wastes

机译:上流多层厌氧反应器(UmaR)处理高固体有机废物的细菌群落分析

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摘要

A novel anaerobic digestion configuration, the upflow multi-layer anaerobic reactor (UMAR), was developed to treat high-solids organic wastes. The UMAR was hypothesized to form multi-layer along depth due to the upflow plug flow; use of a recirculation system and a rotating distributor and baffles aimed to assist treating high-solids influent. The chemical oxygen demand (COD) removal efficiency and methane (CH4) production rate were 89% and 2.10 L CH4/L/day, respectively, at the peak influent COD concentration (110.4 g/L) and organic loading rate (7.5 g COD/L/day). The 454 pyrosequencing results clearly indicated heterogeneous distribution of bacterial communities at different vertical locations (upper, middle, and bottom) of the UMAR. Firmicutes was the dominant (>70%) phylum at the middle and bottom parts, while Deltaproteobacteria and Chloroflexi were only found in the upper part. Potential functions of the bacteria were discussed to speculate on their roles in the anaerobic performance of the UMAR system.
机译:开发了一种新型的厌氧消化配置,即上流式多层厌氧反应器(UMAR),用于处理高固体有机废物。假设由于向上的塞流,UMA沿深度形成多层。使用再循环系统以及旋转的分配器和挡板,旨在帮助处理高固体分的进水。在最高进水COD浓度(110.4 g / L)和有机负荷量(7.5 g COD)下,化学需氧量(COD)去除效率和甲烷(CH4)生产率分别为89%和2.10 L CH4 / L / day。 / L /天)。 454焦磷酸测序结果清楚地表明了UMAR不同垂直位置(上部,中部和底部)细菌群落的异质分布。硬毛是中部和下部的显性门(> 70%),而三角洲变形杆菌和绿弯曲菌仅在上部。讨论了细菌的潜在功能,以推测其在UMAR系统厌氧性能中的作用。

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