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The effect of metal ions on the microbial attachment ability of flocculent activate sludge

机译:金属离子对絮凝活性污泥微生物附着能力的影响

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As a kind of biofilm structure, microbial attachment was believed to play an important role in the aggregation and stability of flocculent activated sludge (FAS), and also its translation to aerobic granular activated sludge (AGAS). The aim of this study was to investigate the effect of Ca2+, Mg2+, Cu2+, Fe2+, Zn2+, K+, and Na+, which were frequently found in the biological wastewater-treatment systems on the microbial attachment of FAS, in order to provide a new strategy for the cultivation of FAS and AGAS. The results showed that different metal ions had different effects on the process of microbial attachment of FAS; in particular, Cu2+, Fe2+, and Zn2+ could increase the microbial attachment ability of FAS at appropriate concentrations, and disrupted the process at higher concentrations. Mg2+ would greatly enhance the microbial attachment of FAS at lower concentrations but then the biomass of attachment was fallen down to a level close to that of the control. However, Ca2+, K+, and Na+ always exhibited a positive impact on the microbial attachment of FAS. Besides, the concentration of FAS suspension and the culture time both had an effect on the microbial attachment of FAS. Moreover, the acyl-homoserine-lactones-based quorum-sensing system, the content of EPS, and the relative hydrophobicity of FAS had been greatly influenced by metal ions. As all these parameters had close relationships with microbial attachment process, changes in these parameters may affect the microbial attachment of FAS.
机译:作为一种生物膜结构,微生物附着被认为在絮凝活性污泥(FAS)的聚集和稳定性以及其转化为好氧颗粒活性污泥(AGAS)中起着重要作用。这项研究的目的是研究在生物废水处理系统中常见的Ca2 +,Mg2 +,Cu2 +,Fe2 +,Zn2 +,K +和Na +对FAS微生物附着的影响,以提供一种新的方法。 FAS和AGAS的种植策略。结果表明,不同的金属离子对FAS的微生物吸附过程具有不同的影响。特别是,Cu2 +,Fe2 +和Zn2 +可以在适当的浓度下增强FAS的微生物附着能力,并在较高浓度下破坏该过程。 Mg2 +会在较低浓度下极大地增强FAS的微生物附着,但随后附着生物量下降到接近对照的水平。但是,Ca2 +,K +和Na +始终对FAS的微生物附着有积极影响。此外,FAS悬浮液的浓度和培养时间均对FAS的微生物附着有影响。此外,金属离子对基于酰基高丝氨酸内酯的群体感应系统,EPS的含量以及FAS的相对疏水性都有很大的影响。由于所有这些参数都与微生物附着过程密切相关,因此这些参数的变化可能会影响FAS的微生物附着。

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