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On the design and operation of primary settling tanks in state of the art wastewater treatment and water resources recovery

机译:关于最先进的废水处理和水资源回收的主要沉降池的设计和操作

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摘要

In state of the art wastewater treatment, primary settling tanks (PSTs) are considered as an integral part of the biological wastewater and sludge treatment process, as well as of the biogas and electric energy production. Consequently they strongly influence the efficiency of the entire wastewater treatment plant. However, in the last decades the inner physical processes of PSTs, largely determining their efficiency, have been poorly addressed. In common practice PSTs are still solely designed and operated based on the surface overflow rate and the hydraulic retention time (HRT) as a black box. The paper shows the results of a comprehensive investigation programme, including 16 PSTs. Their removal efficiency and inner physical processes (like the settling process of primary sludge), internal flow structures within PSTs and their impact on performance were investigated. The results show that: (1) the removal rates of PSTs are generally often underestimated in current design guidelines, (2) the removal rate of different PSTs shows a strongly fluctuating pattern even in the same range of the HRT, and (3) inlet design of PSTs becomes highly relevant in the removal efficiency at rather high surface overflow rates, above 5 m/h, which is the upper design limit of PSTs for dry weather load.
机译:在最先进的废水处理技术中,初级沉降池(PST)被视为生物废水和污泥处理过程以及沼气和电能生产的组成部分。因此,它们极大地影响了整个废水处理厂的效率。但是,在过去的几十年中,PST的内部物理过程(很大程度上决定了它们的效率)一直没有得到很好的解决。在通常的实践中,PST仍然仅根据表面溢流率和水力停留时间(HRT)进行设计和操作,作为黑匣子。该文件显示了包括16个PST在内的全面调查计划的结果。研究了它们的去除效率和内部物理过程(如初级污泥的沉降过程),PST内部的内部流动结构及其对性能的影响。结果表明:(1)当前设计指南中通常会低估PST的去除率;(2)即使在相同的HRT范围内,不同PST的去除率也会显示出强烈的波动模式;(3)进样口在相当高的表面溢流速率(高于5 m / h)下,PST的设计与去除效率高度相关,这是干旱天气下PST的设计上限。

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