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Increased performance of secondary clarifiers using dynamic distribution of minimum return sludge rates

机译:通过动态分配最小回流污泥率提高二级澄清池的性能

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摘要

Most wastewater treatment plants have several secondary clarifiers or even more sets of clarifiers including several secondary clarifiers, and in practice it is a well known problem that equal distribution of the load to the single clarifier (or set of clarifiers) is very difficult-not to say impossible-to obtain. If the problem is neglected, quite a big percentage of the total clarifier capacity-measured as the max. allowed hydraulic load-can be lost. Further, return sludge rates are seldom controlled by any other means than as a (typically too high) percentage of the inlet to the wastewater treatment plant-giving a varying and too low suspended solids concentration in the return sludge, which again can lead to an unnecessary use of polymer in the pre-dewatering of the surplus sludge taken from the return sludge. A control of the return sludge rate divided into two parts - control of the total return sludge flow and control of how the total flow shall be distributed between the secondary clarifiers - is able to solve the mentioned problems. Finally, as shall be demonstrated on full scale wastewater treatment plants, a considerable increase of the hydraulic capacity of the treatment plants can be obtained.
机译:大多数废水处理厂都有几个二级澄清池,甚至还有更多套澄清池,包括几个二级澄清池,在实践中众所周知的问题是,很难将负荷平均分配到单个澄清池(或一组澄清池)上,这很难做到。说不可能获得。如果忽略了该问题,则占澄清池总容量的很大一部分(最大)。允许的液压负载可能会丢失。此外,除了污泥进水口的悬浮物浓度变化过低和过低之外,很少通过其他方法来控制污泥率,而不能以废水处理厂进口的百分比(通常太高)来控制污泥率,这又会导致在对来自回流污泥的剩余污泥进行预脱水时,不必要地使用聚合物。控制回流污泥速率分为两部分-控制回流污泥总流量和控制如何在二级澄清池之间分配总流量-可以解决上述问题。最后,正如在大型污水处理厂中所证明的那样,可以大大提高处理厂的水力容量。

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