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Biological stability and dewaterability of CAS and MBR sludge

机译:CAS和MBR污泥的生物稳定性和脱水性

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This paper investigates and compares the characteristics of sludges produced by membrane bio-reactor (MBR) and conventional activated sludge (CAS) systems. Stability and dewaterability of full-scale MBR and CAS treatment plants are measured and compared. Obtained results show that specific methane production is higher in CAS sludge compared to MBR sludge, although one of the CAS sludges investigated had a sludge retention time (SRT) higher than the two MBR sludges investigated. Nonetheless, MBR sludge results to be characterized by a non-negligible biometanation potential (BMP). Methane production measured during BMP tests is around 200NmL/gVS for MBR sludge, equaling 2/3 of methane production obtained, in similar condition, for CAS sludge. Dewaterability of the sludge resulted to be linearly correlated with the SRT and the sludge extracellular polymeric substances (EPS) concentration. The higher the SRT and the lower the sludge EPS concentration, the lower the specific resistance to filtration.
机译:本文研究并比较了膜生物反应器(MBR)和常规活性污泥(CAS)系统产生的裂缝特性。测量和CAS处理植物的稳定性和脱水性并进行比较。得到的结果表明,与MBR污泥相比,CAS污泥的特定甲烷产量较高,但是研究的CAS污泥之一具有高于研究的两个MBR裂缝的污泥保留时间(SRT)。尽管如此,MBR污泥结果的特征是不可忽略的生物化电位(BMP)。在BMP试验期间测量的甲烷生产是MBR污泥的200nml / GVS,同样在类似条件下获得的2/3的甲烷生产,用于CAS污泥。污泥的脱水性导致与SRT和污泥细胞外聚合物物质(EPS)浓度线性相关。 SRT越高,污泥EPS浓度越低,较低的耐过滤耐热。

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