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Study of aerobic granular sludge stability in a continuous-flow membrane bioreactor

机译:连续流膜生物反应器中好氧颗粒污泥稳定性的研究

摘要

A granular continuous-flow membrane bioreactor with a novel hydrodynamic configuration was developed to evaluate the stability of aerobic granular sludge (AGS). Under continuous-flow operation (Period I), AGS rapidly lost their structural integrity resulting in loose and fluffy microbial aggregates in which filamentous bacteria were dominant. The intermittent feeding (Period II) allowed obtaining the succession of feast and famine conditions that favored the increase in AGS stability. Although no further breakage occurred, the formation of new granules was very limited, owing to the absence of the hydraulic selection pressure. These results noted the necessity to ensure, on the one hand the succession of feast/famine conditions, and on the other, the hydraulic selection pressure that allows flocculent sludge washout. This preliminary study shows that the proposed configuration could meet the first aspect; in contrast, biomass selection needs to be improved.
机译:开发了具有新型流体动力学构型的颗粒连续流膜生物反应器,以评估好氧颗粒污泥(AGS)的稳定性。在连续流操作(时段I)下,AGS迅速失去了结构完整性,导致微生物聚集体疏松蓬松,其中丝状细菌占主导地位。间歇喂食(时段II)允许获得一系列有利于提高AGS稳定性的盛宴和饥荒条件。尽管没有进一步的破裂发生,但是由于没有水力选择压力,新颗粒的形成非常有限。这些结果表明,一方面必须确保连续进行盛宴/饥荒条件,另一方面要确保允许选择絮凝污泥的水力选择压力。初步研究表明,建议的配置可以满足第一个方面。相反,生物质的选择需要改进。

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