Formation mechanisms and mechanical properties of anaerobic lagoon scum

The formation of a floating scum layer on the liquid surface of covered anaerobic lagoons prevents optimal and efficient lagoon operation. Scum can reduce hydraulic retention time, inhibit biogas capture and cause damage to lagoon covers. Managing the negative impact of scum requires understanding w...

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Veröffentlicht in:The Science of the total environment 2022-10, Vol.843, p.156907-156907, Article 156907
Hauptverfasser: Bobade, Veena, Das, Tanmoy, Usher, Shane P., McMurrich, Damian, Stickland, Anthony D., Eshtiaghi, Nicky
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Sprache:eng
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Zusammenfassung:The formation of a floating scum layer on the liquid surface of covered anaerobic lagoons prevents optimal and efficient lagoon operation. Scum can reduce hydraulic retention time, inhibit biogas capture and cause damage to lagoon covers. Managing the negative impact of scum requires understanding what scum is, how it forms and how it consolidates. This paper presents measurements of the physical and mechanical properties of scum and sludge samples from two covered anaerobic lagoons that alternatively treat municipal and abattoir waste. Both scum samples consisted of a large proportion of suspended solids that sank once the sample was diluted, degassed and mixed, indicating that sludge flotation and buoyancy due to biogas generation is a major contributor to scum accumulation. Total and soluble chemical oxygen demand and volatile solids in the scum are approximately 90 % higher than in sludge, which indicates that scum has a large proportion of undigested solids. Fourier-transform infrared spectroscopy demonstrates that scum and sludge have similar organic matter, with both including fats, oils, greases, proteins, and polysaccharides. Scum formation due to gas buoyancy implies that scum accumulation is inevitable and controlling fats, oils, and greases at the source of the wastewater is not enough to stop scum formation. Scum accumulation increases due to buoyancy, which drives scum compaction and increases the strength of the scum, as demonstrated by the measurement of scum compressional rheology. Scum management techniques that disturb the scum layer early enough to release the entrapped gas enable the scum to sink and get digested, thus minimising the impact of scum formation. [Display omitted] •Postulated scum formation mechanism via the settling and vacuum filtration experiments.•Sludge flotation due to biogas generation is a major contributor to scum accumulation.•Scum consists of a large portion of undigested organics and is denser than water.•Scum accumulation and consolidation increases with time and buoyancy resulting in strengthened network.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2022.156907