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Physical characteristics of the sludge in a complete retention membrane bioreactor

机译:完整保留膜生物反应器中污泥的物理特性

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Sludge physical characteristics play an important role in the operation of membrane bioreactors (MBR) due to their influence on filtration and their effects on handling of excess sludge. These systems are designed to maintain high solid concentrations, thus limiting sludge production and the related operational costs of the process. In this study, the sludge from a bench scale MBR operated for about 1 year with complete solid retention was investigated to assess its physical and rheological properties. Concentrations of mixed liquor suspended solids (MLSS) up to 24 g TSS L~(-1) affected the diluted sludge volume index (DSVI), the capillary suction time (CST), the specific resistance to filtration (SRF) and the compressibility (s). The MBR sludge displayed similar dewatering properties of conventional waste activated sludge, suggesting that the upgrade of wastewater treatment plants with the MBR technology would not affect the behaviour of the dewatering equipment. The apparent viscosity was expressed as a function of the MLSS and the experimental data were interpreted by comparing different models. Ostwald model was chosen, and two equations for viscosity were proposed. The thixotropy of MBR sludge was also evaluated by measuring the reduced hysteresis area (rHa) and relating this parameter to the characteristics of the sludge. The evaluation of energy consumption for mixing evidenced that, under the tested conditions, the increase of solid concentration from 3 to 30 gTSS L~(-1) resulted in a limited increase of energy requirements (25-30%).
机译:污泥的物理特性在膜生物反应器(MBR)的操作中起着重要的作用,因为它们对过滤的影响以及对处理多余污泥的影响。这些系统旨在保持较高的固体浓度,从而限制了污泥的产生和该过程的相关运营成本。在这项研究中,研究了从台式规模MBR运行了大约1年并完全保留固体的污泥,以评估其物理和流变性。高达24 g TSS L〜(-1)的混合液悬浮固体(MLSS)浓度影响稀释的污泥体积指数(DSVI),毛细抽吸时间(CST),比过滤阻力(SRF)和可压缩性( s)。 MBR污泥显示出与常规废物活性污泥相似的脱水性能,这表明使用MBR技术升级废水处理厂不会影响脱水设备的性能。表观粘度表示为MLSS的函数,并且通过比较不同模型来解释实验数据。选择了Ostwald模型,并提出了两个粘度方程。 MBR污泥的触变性还通过测量减少的滞后面积(rHa)并将该参数与污泥的特性联系起来进行了评估。混合能耗的评估表明,在测试条件下,固体浓度从3 gTSS L〜(-1)增加到30 gTSS L〜(-1),导致能量需求增加有限(25-30%)。

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