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The mechanisms of granulation of activated sludge in wastewater treatment its optimization and impact on effluent quality

机译:活性污泥在废水处理中的颗粒化机理优化及其对废水质量的影响

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摘要

Granular activated sludge has gained increasing interest due to its potential in treating wastewater in a compact and efficient way. It is well-established that activated sludge can form granules under certain environmental conditions such as batch-wise operation with feast-famine feeding, high hydrodynamic shear forces, and short settling time which select for dense microbial aggregates. Aerobic granules with stable structure and functionality have been obtained with a range of different wastewaters seeded with different sources of sludge at different operational conditions, but the microbial communities developed differed substantially. In spite of this, granule instability occurs. In this review, the available literature on the mechanisms involved in granulation and how it affects the effluent quality is assessed with special attention given to the microbial interactions involved. To be able to optimize the process further, more knowledge is needed regarding the influence of microbial communities and their metabolism on granule stability and functionality. Studies performed at conditions similar to full-scale such as fluctuation in organic loading rate, hydrodynamic conditions, temperature, incoming particles, and feed water microorganisms need further investigations.
机译:颗粒状活性污泥由于其以紧凑而有效的方式处理废水的潜力而受到越来越多的关注。公认的是,活性污泥可以在某些环境条件下形成颗粒,例如分批进料,饱餐,高水动力剪切力和较短的沉降时间,这些都可以选择致密的微生物聚集体。在不同的操作条件下,用不同的污泥来源播种了一系列不同的废水,获得了具有稳定结构和功能的好氧颗粒,但是所形成的微生物群落却大不相同。尽管如此,仍会发生颗粒不稳定性。在这篇综述中,评估了与制粒有关的机制及其如何影响污水质量的文献,并特别注意了所涉及的微生物相互作用。为了能够进一步优化过程,需要更多有关微生物群落及其代谢对颗粒稳定性和功能性的影响的知识。在类似于满量程的条件下进行的研究,例如有机负荷率的波动,流体动力学条件,温度,进入的颗粒和给水微生物等,都需要进一步研究。

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