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Effect of extracellular polymeric substances (EPS) conditioned by combined lysozyme and cationic polyacrylamide on the dewatering performance of activated sludge

机译:溶菌酶和阳离子聚丙烯酰胺联合调节的细胞外聚合物对活性污泥脱水性能的影响

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Extracellular polymeric substance (EPS) and the water within it account for about 80% of the total sludge mass, significantly correlated with sludge charge properties, particle size, and dewaterability, while their relation is still ambiguous. To clarify the effect of EPS characteristics on the activated sludge dewaterability, the sludge conditioned by cationic polyacrylamide (CPAM) and lysozyme alone or in combination was comparatively investigated by the means of the SPSS17 software incorporation with chemical analysis. According to the results, the combined conditioning increased both dewatering extent and dewatering rate with the water content as low as 57.79%. It was mainly attributed to the destruction of microbial cell wall and EPS structure by enzymatic conditioning, beneficial for the release of protein (PN) and polysaccharide (PS), as well as the conversion of intracellular water and some bound water into free water. Additionally, Pearson's correlation and factor analysis confirmed the significant influence of EPS properties on sludge dewaterability and explored their detailed relationship. It was indicated the most crucial factors consisted of PNS (PN in S-EPS), PNL (PN in LB-EPS), PNT (PN in TB-EPS), and PST (PS in TB-EPS) accounted for 72.83% in all of the total variance for the contribution to the dewatered water content. Moreover, the high concentration of PNS and PNL led to the zeta potential rising to -9.74 mV, and the destruction of EPS structure was favorable for sludge to form smaller particle size and compact floc structure. All the results were confirmed by the microstructure changes of the sludge flocs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:细胞外聚合物(EPS)及其中的水约占污泥总质量的80%,与污泥的装料特性,粒径和脱水能力显着相关,但它们之间的关系仍然不明确。为了阐明EPS特性对活性污泥脱水性的影响,通过结合化学分析的SPSS17软件,对单独或组合使用阳离子聚丙烯酰胺(CPAM)和溶菌酶处理的污泥进行了比较研究。根据结果​​,组合条件提高了脱水程度和脱水率,含水量低至57.79%。它主要归因于酶促条件破坏微生物细胞壁和EPS结构,有利于蛋白质(PN)和多糖(PS)的释放,以及细胞内水和部分结合水向游离水的转化。此外,Pearson的相关性和因子分析证实了EPS性能对污泥脱水性的显着影响,并探讨了它们的详细关系。结果表明,最重要的因素包括:PNS(S-EPS中的PN),PNL(LB-EPS中的PN),PNT(TB-EPS中的PN)和PST(TB-EPS中的PS)占72.83%。所有的总方差都是对脱水水含量的贡献。此外,高浓度的PNS和PNL导致zeta电位上升至-9.74 mV,EPS结构的破坏有利于污泥形成较小的粒径和致密的絮凝结构。所有结果均由污泥絮凝物的微观结构变化证实。 (C)2019 Elsevier Ltd.保留所有权利。

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