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Conditioning of sewage sludge via combined ultrasonication-flocculation-skeleton building to improve sludge dewaterability

机译:通过联合超声絮凝 - 骨架建筑改善污泥脱水性的污水污泥调理

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Strong water trapping ability of polyelectrolyte flocculated sludge and high compressibility of sludge filter cake greatly hindered the further improvement of sludge dewaterability. Ultrasound (US) was used to strip the water from the sludge flocs through sludge disintegration, traditional cationic polyacrylamide (CPAM) was applied to reconstruct the sludge aggregates through flocculation, and rice husk (RH) was utilized to improve the permeability of sludge filter cake as skeleton builders in this paper. The feasibility of combined US-CPAM-RH sludge conditioning was demonstrated, and single and co-conditioning processes were compared to explore the synergetic effect and mechanisms of US-CPAM-RH sludge conditioning. The results indicated that the sludge dewaterability was considerably improved by the combined US-CPAM-RH conditioning compared with that of raw sludge. The optimal ultrasonication condition was 0.3 W/ml for 12 s with an Ultrasound frequency of 22 kHz, and the RH and CPAM dosage was 50.0 wt% and 20 mg/L, respectively, which resulted in a shortest time to filter (TTF) of 43 s and a lowest moisture content of sludge filter cake of 62.22%. The US mainly stripped the extracellular polymeric substances and water from the sludge flocs, leading to an obvious increase of concentration of proteins and polysaccharides in sludge filtrate. The CPAM and RH addition resulted in a remarkable sludge floc growth to a mean diameter d(0.5) of 128.85 mu m after combined US-CPAM-RH conditioning. Moreover, scanning electron microscopy (SEM) results clearly showed that the combined US-CPAM-RH conditioning formed a more porous structure of sludge filter cake with a porosity increase of 98.80% and a compressibility decrease of 37.81% compared with that of raw sludge. Thus, the US-CPAM-RH co-conditioning could significantly improve the sludge dewaterability.
机译:聚电解质絮凝污泥的强水诱捕能力和污泥滤饼的高压缩性大大阻碍了污泥脱水性的进一步改善。超声(美国)用于通过污泥崩解从污泥絮凝物中剥离水,将传统的阳离子聚丙烯酰胺(CPAM)施用通过絮凝重建污泥骨料,利用稻壳(RH)来改善污泥滤饼的渗透性作为本文的骨架建设者。对US-CPAM-RH污泥调节组合的可行性得到了证明,并进行了单一和共同调节过程,以探讨US-CPAM-RH污泥调节的协同作用和机制。结果表明,与原料污泥相比,通过组合的US-CPAM-RH调节,污泥脱水性大大改善。对于12秒的最佳超声发生条件为0.3W / ml,超声频率为22kHz,分别为50.0wt%和20mg / L,导致过滤(TTF)的最短时间43s和污泥滤饼的最低水分含量为62.22%。美国主要将细胞外聚合物物质和水从污泥絮凝物中剥离,导致污泥滤液中蛋白质和多糖浓度的显而易见。 CPAM和RH加入,使US-CPAM-RH调节组合后,128.85μm的平均直径D(0.5)的平均直径D(0.5)。此外,扫描电子显微镜(SEM)结果清楚地表明,联合的US-CPAM-RH调节形成了污泥滤饼的多孔结构,孔隙率增加了98.80%,与原料污泥相比,压缩性降低37.81%。因此,US-CPAM-RH共调节可以显着改善污泥脱水性。

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