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Optimal hydraulic shear strength and mechanism of activated sludge floc re-growth after breakage

机译:断裂后最佳液压剪切强度及活性污泥絮凝重新生长的机理

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摘要

In order to evaluate the effects of hydraulic shearing action on activated sludge floc aggregation, floc aggregation, breakage and re-growth performances under different shear strengths were systematically examined. Performances were evaluated by measuring the floc size variations using a laser particle size analyser on-line monitoring technique. The flocs after breakage were characterised by investigating the composition of extra cellular polymer substances (EPS), floc size, substances released due to surface erosion and chemical structures using Fourier transform infrared spectroscopy (FTIR) to clarify the breakage model and re-growth mechanism. The results showed that activated sludge flocs broken at a hydraulic shear strength GT value (the product of the velocity gradient and time) of 56,280 exhibited enhanced re-growth performance compared with the control. The substances released from sludge increased with shear strength, indicating that the floc breakage mode gradually transitioned from fragmentation to surface erosion. FTIR revealed that, after breakage, the spectrum of loosely bound EPS in sludge tended to be similar to that of tightly bound EPS. The results suggest that the breakage of activated sludge flocs under moderate hydraulic shear strength can fragment flocs into smaller particles without surface erosion and promote the exposure of inner tightly bound EPS, thereby improving re-growth performance.
机译:为了评估液压剪切作用对活性污泥的影响,系统地检查了不同剪切强度下的絮凝聚集,断裂和再生生长性能。通过使用激光粒度分析仪在线监测​​技术测量絮凝尺寸变化来评估性能。通过研究使用傅里叶变换红外光谱(FTIR)的表面侵蚀和化学结构,额外细胞聚合物物质(EPS),絮凝物,絮凝物,絮凝物的物质的组成来表征破裂后的絮凝物的特征在于,释放出释放的物质。结果表明,与对照相比,56,280的液压剪切强度GT值(速度梯度和时间的产物)断裂的活性污泥絮凝物具有增强的重新生长性能。从污泥释放的物质随着剪切强度而增加,表明絮凝破裂模式从碎片逐渐转变为表面腐蚀。 FTIR透露,破裂后,污泥中松散的EPS的光谱往往与紧密结合的EPS相似。结果表明,在中等液压剪切强度下的活化污泥絮凝物的破裂可以将絮状物片段絮凝物中的较小颗粒而没有表面侵蚀,促进内紧密结合的EPS暴露,从而提高了再生生长性能。

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