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Physico-chemical factors affecting the E. coli removal in a rotating biological contactor (RBC) treating UASB effluent

机译:影响处理UASB废水的旋转生物接触器(RBC)中大肠杆菌去除的理化因素

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The removal mechanism of E. coli from UASB effluent using a Rotating Biological Contractor (RBC) has been investigated. Preliminary batch experiments in a RBC indicate a first-order removal kinetics. Variation in the dissolved oxygen concentration and E. coli counts over the depth of the RBC has been recorded and indicates that the RBC is not a completely mixed reactor. Therefore batch experiments were carried out in a beaker where the different operating conditions can be controlled. Factors affecting the removal of E. coli via a biofilm system as stirring, dissolved oxygen concentration, pH, and addition of cationic polymer were investigated. The results obtained indicated that the most important removal mechanism of E. coli in the biofilm is the adsorption process, followed by sedimentation. Die-off is a relatively minor removal mechanism in an RBC system. Higher removal rate of E. coli was observed in an aerobic compared to an anaerobic biofilm system. Variation of dissolved oxygen concentration (3.3-8.7mgl~(-1)) and pH-values between 6.5 and 9.3 did not exert any significant effect on the removal rate of the E. coli by the heterotrophic biofilm. A rapid adsorption of E. coli to the biofilm occurred during the first days after adding the cationic polymer, after which the adsorption slowed down.
机译:研究了使用旋转生物承包商(RBC)从UASB废水中去除大肠杆菌的机理。 RBC中的初步批处理实验表明一级去除动力学。记录了在RBC深度范围内溶解氧浓度和大肠杆菌数量的变化,这表明RBC不是完全混合的反应器。因此,在可以控制不同操作条件的烧杯中进行批量实验。研究了通过搅拌,溶解氧浓度,pH和添加阳离子聚合物等因素影响通过生物膜系统去除大肠杆菌的因素。所得结果表明,生物膜中大肠杆菌最重要的去除机理是吸附过程,然后是沉降过程。死掉是RBC系统中相对较小的去除机制。与厌氧生物膜系统相比,在有氧环境中观察到较高的大肠杆菌去除率。溶氧浓度(3.3-8.7mgl〜(-1))和pH值在6.5和9.3之间变化对异养生物膜对大肠杆菌的去除率没有明显影响。添加阳离子聚合物后的头几天,大肠杆菌便迅速吸附到生物膜上,此后吸附减慢了。

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