Treatment of real domestic sewage in a pilot‐scale aerobic granular sludge reactor: Assessing start‐up and operational control

序批式反应器 造粒 流出物 沉淀 污水处理 污水 废水 制浆造纸工业 环境科学 污泥膨胀 沉积作用 悬浮物 有机质 污水污泥处理 化学 废物管理 污水污泥 环境工程 生物 沉积物 材料科学 工程类 复合材料 有机化学 古生物学
作者
Fábio Campos,Natália Rodrigues Guimarães,Fernanda Cunha Maia,Marcel Zanetti Sandoval,João Paulo Bassin,Rodrigo de Freitas Bueno,Roque Passos Piveli
出处
期刊:Water Environment Research [Wiley]
卷期号:93 (6): 896-905 被引量:9
标识
DOI:10.1002/wer.1480
摘要

Aerobic granular sludge (AGS) has been considered a breakthrough in the wastewater treatment sector given its key characteristics, such as excellent settleability, simultaneous removal of organic and nutrient pollutants, and compactness. However, the formation of granules often delays the start-up of granular-based systems, especially in large-scale settings. This study addressed the start-up of a pilot-scale AGS sequencing batch reactor (SBR) treating domestic sewage, monitored for over 280 days. The challenges faced during aerobic granulation using a mixture of activated sludge and anaerobic granular sludge as inoculum and the performance of the reactor on organic matter, nitrogen, and phosphorus removal were discussed. Results showed that robust and stable granules were formed after an initial period of around six months, with the settling time playing a key role on granules development. At least 80% of granules had a diameter greater than 0.2 mm and 60% >1 mm. In general, the reactor achieved high nitrogen removal efficiency, as well as satisfactory removal of soluble COD. However, total COD abatement was impaired by the various episodes of suspended solids loss with the effluent. Overall, this study demonstrated that the reactor was efficient in the treatment of domestic sewage, but its performance was adversely affected from sudden changes in the influent quality. PRACTITIONER POINTS: Aerobic granular sludge (AGS) applied to small-scale domestic sewage treatment. The control of sludge age in AGS can be a problem due to short sedimentation times. High DO to maintain aerobic granulation can economically make the process economically unfeasible in tropical countries. A sludge with excellent sedimentation properties was obtained. However, maintaining the granule over time is a challenge.
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