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Nitrification in hybrid bioreactors treating simulated domestic wastewater.

机译:混合生物反应器中的硝化处理模拟生活污水。

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Aim: To provide deeper insights into nitrification process within aerobic bioreactors containing supplemental physical support media (hybrid bioreactors). Methods and Results: Three bench-scale hybrid bioreactors with different media size and one control bioreactor were operated to assess how biofilm integrity influences microbial community conditions and bioreactor performance. The systems were operated initially at a 5-day hydraulic retention time (HRT), and all reactors displayed efficient nitrification and chemical oxygen demand (COD) removal (>95%). However, when HRT was reduced to 2.5 days, COD removal rates remained high, but nitrification efficiencies declined in all reactors after 19 days. To explain reduced performance, nitrifying bacterial communities (ammonia-oxidizing bacteria, AOB; nitrite-oxidizing bacteria, NOB) were examined in the liquid phase and also on the beads using qPCR, FISH and DGGE. Overall, the presence of the beads in a reactor promoted bacterial abundances and diversity, but as bead size was increased, biofilms with active coupled AOB-NOB activity were less apparent, resulting in incomplete nitrification. Conclusions: Hybrid bioreactors have potential to sustain effective nitrification at low HRTs, but support media size and configuration type must be optimized to ensure coupled AOB and NOB activity in nitrification. Significance and Impact of the Study: This study shows that AOB and NOB coupling must be accomplished to minimize nitrification failure.
机译:目的:提供对含有补充物理支持介质(混合生物反应器)的好氧生物反应器中硝化过程的更深入了解。方法和结果:操作了三种具有不同培养基大小的台式混合生物反应器和一个对照生物反应器,以评估生物膜完整性如何影响微生物群落条件和生物反应器性能。该系统最初在5天的水力停留时间(HRT)下运行,并且所有反应器均显示出有效的硝化作用和化学需氧量(COD)去除率(> 95%)。但是,当HRT降低到2.5天时,COD去除率仍然很高,但是19天后所有反应器的硝化效率均下降。为了解释性能下降,使用qPCR,FISH和DGGE在液相中以及在磁珠上检查了硝化细菌群落(氨氧化细菌,AOB;亚硝酸盐氧化细菌,NOB)。总体而言,反应器中珠子的存在促进了细菌的丰度和多样性,但是随着珠子尺寸的增加,具有主动偶联AOB-NOB活性的生物膜变得不那么明显,导致硝化不完全。结论:混合生物反应器具有在低HRT时维持有效硝化的潜力,但必须优化支持介质的尺寸和构型,以确保硝化中AOB和NOB的耦合活性。研究的意义和影响:该研究表明必须完成AOB和NOB的偶联,以最大程度地减少硝化失败。

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