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Influence of ferric oxyhydroxide addition on biomethanation of waste activated sludge in a continuous reactor

机译:羟基氧化铁的添加对连续反应器中废活性污泥生物甲烷化的影响

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摘要

This study investigated the potential of enhancing the activity of iron-reducing bacteria (IRBs) to increase the biomethanation rate of waste activate sludge (WAS). The effects of biostimulation by ferric oxyhydroxide (Phase 2) and bioaugmentation with an enriched IRB consortium (Phase 3) were examined in a continuous anaerobic reactor treating WAS. Compared to the control operation (Phase 1), significant rises in methane yield (10.8–59.4%) and production rate (24.5–52.9%) were demonstrated by the biostimulation and bioaugmentation treatments. Visible structural changes were observed in bacterial community with the phases while not in archaeal community. Acinetobacter- and Spirochaetales-related populations were likely the major players driving anaerobic iron respiration and thus leading to enhanced biomethanation performance, in Phases 2 and 3, respectively. Our results suggest an interesting new potential for enhancing biomethanation of WAS.
机译:这项研究调查了增强铁还原细菌(IRB)活性以增加废物活化污泥(WAS)的生物甲烷化率的潜力。在处理WAS的连续厌氧反应器中检查了氢氧化铁的生物刺激作用(阶段2)和富集IRB财团(阶段3)的生物增强作用。与控制操作相比(阶段1),通过生物刺激和生物强化处理,甲烷产量(10.8-59.4%)和生产率(24.5-52.9%)显着提高。在细菌群落中观察到明显的结构变化,而在古细菌群落中则没有。与不动杆菌属和螺旋藻相关的种群可能是推动厌氧铁呼吸并因此导致生物甲烷化性能增强的主要参与者,分别在第2阶段和第3阶段。我们的结果表明,增强WAS生物甲烷化的有趣​​新潜力。

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