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Correlation of physicochemical properties and sludge dewaterability under chemical conditioning using inorganic coagulants

机译:使用无机混凝剂的化学条件下理化性质与污泥脱水能力的相关性

摘要

This study investigated the effects of chemical conditioning with three representative inorganic coagulants (FeCl3, polyaluminum chloride (PACl) and high performance PACl (HPAC) on sludge dewaterability. We monitored the particle size, kinetic viscosity (KV), fractal dimension (D-F) and extracellular polymeric substances (EPS) located in different layers of sludge floc (soluble, loosely-bound (LB), tightly-bound (TB)) to understand the correlation of dewaterability and physicochemical properties of sludge under chemical conditioning. The conditioning process included the rapid aggregation of sludge particles induced by charge neutralization and bridging followed by floc densification caused by double electric layer compression. The floc size and D-F were increased after chemical conditioning, indicating that larger and more compact floc formed. The floc conditioned with FeCl3 was smaller but denser than that of PACl and HPAC. Furthermore, sludge dewaterability correlated well with the change in concentration of soluble EPS, LB-EPS and TB-EPS, but not with KV, D-F, floc size. (C) 2013 Published by Elsevier Ltd.
机译:这项研究调查了三种代表性的无机凝结剂(FeCl3,聚氯化铝(PACl)和高性能PACl(HPAC))对污泥脱水性能的影响,并监测了其粒径,动力学粘度(KV),分形维数(DF)和位于污泥絮状物不同层(可溶性,松散结合(LB),紧密结合(TB))中的细胞外聚合物质(EPS),以了解在化学条件下污泥的脱水性与理化性质之间的关系。电荷中和和桥接导致的污泥颗粒快速聚集,随后由于双重电层压缩而引起的絮凝致密化;经过化学处理后,絮凝物的大小和DF增大,表明形成的絮凝物更大,更致密;用FeCl3预处理的絮凝物较小,但比PACl和HPAC的密度高。可溶性EPS,LB-EPS和TB-EPS浓度的变化,但不随KV,D-F和絮凝物大小变化。 (C)2013由Elsevier Ltd.出版

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