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Enhanced granulation and methane recovery at low load by downflow sludge circulation in anaerobic treatment of domestic wastewater

机译:通过在国内废水中的厌氧处理中的下流污泥循环,增强造粒和甲烷恢复

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摘要

The effects of downflow sludge circulation on granulation and methane recovery at low load were investigated for domestic wastewater treatment in a modified anaerobic reactor. Compared with conventional upflow anaerobic reactors, enhanced granulation with shortened start-up time was achieved and stable granules were successfully cultivated only after 58 days operations. The introduction of downflow sludge circulation resulted in reverse wastewater-sludge flow and uniform sludge distribution in the reaction zone, which contributed to enhanced wastewater-sludge mass transfer and satisfactory performance with a high soluble chemical oxygen demand (SCOD) removal efficiency of 94.8% at hydraulic retention time (HRT) 6 h. Besides, enhanced liquid-togas mass transfer caused a lower dissolved CH4 saturation index of 1.11 and a higher CH4 recovery efficiency of 79.48% at HRT 6 h. High throughput sequencing revealed a distinct shift of microbial community during start-up period from Proteobacteria to Bacteroidetes and Chloroflexi in the existence of downflow sludge circulation.
机译:研究了在改良的厌氧反应器中的国内废水处理中对低载量进行了下流污泥循环对造粒和甲烷回收的影响。与常规上流厌氧反应器相比,实现了缩短启动时间的增强造粒,并且在58天的操作后,才能成功培养稳定的颗粒。下流污泥循环的引入导致反应区中的反向废水污泥流动和均匀的污泥分布,这有助于提高废水污泥质量转移和令人满意的性能,具有94.8%的高可溶性化学需氧量(SCOD)去除效率为94.8%液压保留时间(HRT)6小时。此外,增强的液体 - Togas传质导致较低的溶解CH4饱和指数为1.11,HRT 6 H的较高CH4恢复效率为79.48%。高通量测序揭示了在血液菌的启动期间微生物群落在血糖菌和氯克隆存在下的下流污泥循环中的初始群落。

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