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Understanding the impact of chemical conditioning with inorganic polymer flocculants on soluble extracellular polymeric substances in relation to the sludge dewaterability

机译:了解与污泥的脱水性相关的无机高分子絮凝剂化学调理对可溶性细胞外聚合物质的影响

摘要

Generally, sludge conditioned with inorganic coagulants exhibits rigid structure and is suitable for high pressure dewatering process. Sludge flocs possess multilayered structure, and the sludge dewaterability is mainly dependent on the properties of soluble extracellular polymeric substances (SEPS). However, few studies have focused on influence of chemical conditioning on the characteristics of SEPS. In this study, the surplus sludge obtained from wastewater treatment plant (WWTP) was conditioned with two inorganic polymer flocculants (IPFs), PACl and HPAC, for improving the sludge dewaterability which was measured using specific resistance to filtration (SRF). Meanwhile, the variation in SEPS properties was investigated with combined high performance size-exclusion chromatography (HPESC) and fluorescence excitation-emission matrix (EEM). According to the experimental results, HPAC showed better performance in improving sludge dewaterability due to higher charge density and better bridging properties. EEM coupled to fluorescence region integration (FRI) demonstrated that protein-like substances were dominant fraction of soluble EPS. HPSEC analysis indicated that most of the SEPS with high molecular weight (>2000 Da) were effectively removed from aqueous phase after conditioning, they might play more important roles in sludge dewatering. SRF correlated well with zeta potential, dissolved organic carbon (DOC) and EPS content located in all four EEM regions under chemical conditioning. This result revealed that EEM in conjunction with FRI was an attractive way to evaluate the sludge conditioning efficiency of IPFs. (C) 2014 Elsevier B.V. All rights reserved.
机译:通常,用无机凝结剂处理过的污泥表现出坚硬的结构,适用于高压脱水过程。污泥絮凝物具有多层结构,污泥的脱水能力主要取决于可溶性细胞外聚合物的性质。但是,很少有研究集中在化学条件对SEPS特性的影响上。在这项研究中,将从废水处理厂(WWTP)获得的剩余污泥用两种无机聚合物絮凝剂(IPF),PACl和HPAC进行处理,以提高污泥的脱水性,该污泥的脱水性使用比抗过滤性(SRF)进行了测量。同时,结合高性能尺寸排阻色谱法(HPESC)和荧光激发发射矩阵(EEM)研究了SEPS性质的变化。根据实验结果,由于较高的电荷密度和更好的桥接特性,HPAC在改善污泥脱水性方面表现出更好的性能。 EEM耦合到荧光区域整合(FRI)表明,蛋白质样物质是可溶性EPS的主要成分。 HPSEC分析表明,经过调理后,大部分高分子量(> 2000 Da)的SEPS可以有效地从水相中去除,它们可能在污泥脱水中起更重要的作用。在化学条件下,SRF与所有四个EEM区域中的zeta电位,溶解有机碳(DOC)和EPS含量密切相关。该结果表明,EEM与FRI结合是评估IPF污泥调节效率的一种有吸引力的方法。 (C)2014 Elsevier B.V.保留所有权利。

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