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Performance of an aerobic/anaerobic hybrid bioreactor under the nitrogen deficient and low F/M conditions

机译:有氧/厌氧混合生物反应器在缺氮和低F / M条件下的性能

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摘要

A bioreactor system without a biomass-liquid separation unit is evaluated for its chemical oxygen demand (COD) removal and biomass retention capabilities under the nitrogen deficient and low F/M conditions that are known to produce bulking biomass. A fully oxygenated stream recycled from an external oxygenator delivers the oxygen to an upflow bioreactor in which a biomass zone is formed and maintained in the absence of gas effervescence. COD is removed with up to 90% efficiency by means of aerobic and anaerobic bacterial activities occurring in the biomass zone. The biomass is bulking which is brought about by the extensive filamentous growth caused by the nitrogen deficient and low F/M conditions adopted. However, the biomass zone is undisturbed at superficial upflow velocities as high as 0.66 cm/min, because it has a porous, mat-like matrix that is augmented by the entanglement of filamentous bacteria with the cell clusters. A low-VSS effluent (i.e., < 10mg/L) is produced directly from the bioreactor.
机译:在已知会产生大量生物质的氮缺乏和低F / M条件下,评估没有生物质-液体分离单元的生物反应器系统的化学需氧量(COD)去除和生物质保留能力。从外部充氧器回收的完全充氧流将氧气输送至上流式生物反应器,在其中形成并保持生物质区而没有气体冒泡。通过生物质区发生的好氧和厌氧细菌活动,COD去除效率高达90%。生物量膨胀是由于氮缺乏和低F / M条件导致的广泛丝状生长所致。然而,生物质区以高达0.66 cm / min的表层上流速度不受干扰,因为它具有多孔的,垫状的基质,通过丝状细菌与细胞团簇的缠结而增强了基质。直接从生物反应器中生产出低VSS的出水(即<10mg / L)。

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