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固体浓度对活性污泥絮凝、调理及脱水的影响。

Effects of solids concentration on activated sludge deflocculation, conditioning and dewatering.

作者信息

Mikkelsen L H, Keiding K

机构信息

Environmental Engineering Laboratory, Aalborg University, Denmark.

出版信息

Water Sci Technol. 2001;44(2-3):417-25.

Abstract

Optimum conditioning of activated sludge in terms of minimum CST was shown to correspond to the complete removal of turbidity, and the increase in turbidity with shear due to e.g. pumping is therefore expected to affect conditioning. The optimum polymer dosage was directly related to the turbidity of activated sludge after two minutes shear, and was considerably lower than the dosage required for charge neutralisation. The turbidity produced by shear increased more than is proportional with solids concentration and was directly related to the apparent viscosity. It is suggested that increasing solids concentration causes increased surface erosion when network structures are broken, and this causes increases in turbidity and required polymer dosage per solids mass. For Aby activated sludge, optimum polymer dosage per solids mass increased by 52% when the solids concentration was increased from 8.2 to 13.7 g SS/l. Modelling of the effect of solids concentration predicts even higher increases in required polymer dosage for higher solids concentrations. This means that reduced thickening prior to pumping and conditioning may be desirable when the hydraulic capacity of the dewatering device is sufficient. Similar trends were observed for an anaerobically digested sludge. For this sludge, reduction of turbidity with FeCl3 reduced the polymer demand.

摘要

就最低毛细吸水时间而言,活性污泥的最佳调理表现为浊度完全去除,因此,例如泵送引起的剪切作用导致的浊度增加预计会影响调理效果。最佳聚合物投加量与两分钟剪切后活性污泥的浊度直接相关,且远低于电荷中和所需的投加量。剪切产生的浊度增加幅度超过与固体浓度的比例关系,且与表观粘度直接相关。有人认为,当网络结构被破坏时,固体浓度增加会导致表面侵蚀加剧,进而导致浊度增加以及单位固体质量所需聚合物投加量增加。对于阿比活性污泥,当固体浓度从8.2克悬浮固体/升增加到13.7克悬浮固体/升时,单位固体质量的最佳聚合物投加量增加了52%。固体浓度影响的模型预测,对于更高的固体浓度,所需聚合物投加量的增加幅度会更大。这意味着,当脱水设备的水力容量足够时,泵送和调理前减少污泥浓缩可能是可取的。对于厌氧消化污泥也观察到了类似趋势。对于这种污泥,用三氯化铁降低浊度可减少聚合物需求。

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