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Composition of activated sludge settling and planktonic bacterial communities treating industrial effluent and their correlation to settling problems

机译:活性污泥沉降和处理工业废水的浮游细菌群落的组成及其与沉降问题的关系

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Problems with deflocculation and solids separation in biological wastewater treatment systems are linked to fluctuations in physicochemical conditions. This study examined the composition of activated sludge bacterial communities in lab-scale sequencing batch reactors treating bleached kraft mill effluent, under transient temperature conditions (30 to 45 °C) and their correlation to sludge settleability problems. The bacterial community composition of settled and planktonic biomass samples in the reactors was monitored via denaturing gradient gel electrophoresis of 16S ribosomal RNA gene fragments. Our analysis showed that settled biomass has a different community composition from the planktonic biomass (49∈±∈7% difference based on Jaccard similarity coefficients; p∈<∈0.01). During times of poor sludge compression, the settled and planktonic biomass became more similar. This observation supports the hypothesis that settling problems observed were due to deflocculation of normally settling flocs rather than the outgrowth of non-settling bacterial species.
机译:生物废水处理系统中的絮凝和固体分离问题与理化条件的波动有关。这项研究检查了在瞬态温度条件下(30至45°C)处理漂白牛皮纸厂废水的实验室规模测序分批反应器中活性污泥细菌群落的组成及其与污泥沉降性问题的相关性。通过变性梯度凝胶电泳对16S核糖体RNA基因片段进行监测,以监测反应器中沉降和浮游生物质样品的细菌群落组成。我们的分析表明,沉降生物量具有不同于浮游生物量的群落组成(根据Jaccard相似系数,相差49∈±ε7%;p∈<∈0.01)。在污泥压缩不佳的时期,沉降生物和浮游生物变得更加相似。该观察结果支持以下假设:观察到的沉降问题是由于正常沉降的絮凝物的絮凝而不是非沉降细菌物种的生长所致。

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