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Hybrid moving bed biofilm reactors: a pilot plant experiment

机译:混合移动床生物膜反应器:中试实验

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摘要

The growing increment of the urbanization and, on the other hand, the even more strict effluent limits imposed by the Water Framework Directive for the receiving water body quality state have led to the need for upgrading several existing WWTP. With this respect HMBBR systems are an innovative solution since they allow to upgrade existing high loaded WWTP without building new tanks. However, some uncertainties in their design, maintenance as well as performance have to be addressed due to their recent acquisition compared with well consolidated technologies such as activated sludge systems. In this light, a data gathering campaign on a HMBBR pilot plant has been performed. The aim was to detect the performance of such new technology as well as to survey the influencing effect of the carrier media filling ratio. Indeed, there may be problem of competitiveness between attached and suspended biomass that jointly operate in the same system for carbon and nitrogen removal. Such competitiveness may lead to a worsening of the system efficiency. The results are interesting and the gathered data in the experimental period show a slight difference in terms of performance behaviour, between the two systems (35 and 66%). Such result leads to address the filling ratio choice towards the 35%.
机译:城市化进程的日益增长,另一方面,《水框架指令》对接收水体质量状态施加的甚至更严格的污水排放限制,导致需要升级现有的多个污水处理厂。从这一方面来看,HMBBR系统是一种创新的解决方案,因为它们无需安装新的储罐即可升级现有的高负荷污水处理厂。但是,由于它们是最近收购的,与诸如活性污泥系统之类的巩固技术相比,它们在设计,维护和性能方面都存在一些不确定性。因此,已经在HMBBR中试工厂进行了数据收集活动。目的是检测这种新技术的性能,并调查载体介质填充率的影响。确实,在同一系统中共同操作的除碳和除氮系统中,附着的和悬浮的生物质之间可能存在竞争性问题。这样的竞争力可能导致系统效率变差。结果很有趣,在实验期间收集的数据显示,在两个系统之间,性能表现方面略有差异(分别为35%和66%)。这样的结果导致将填充率选择朝着35%的方向发展。

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