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Using the kinetics of biological flocculation and the limiting flux theory for the preliminary design of activated sludge systems. I: Model development

机译:利用生物絮凝动力学和极限通量理论对活性污泥系统进行初步设计。一:模型开发

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Current activated sludge models consider that the removal of biodegradable organics by suspended growth includes rapid enmeshment of the organic particles in the microbial floc, hydrolysis of the complex organic molecules into readily biodegradable organic substances, and oxidation of dissolved organic substances. All of the models assume hydrolysis is the rate-limiting step, but none consider the role that the kinetics of biological flocculation and the sludge settling characteristics may play in defining the activated sludge operating parameters. Several researchers have studied the kinetic of biological flocculation, and have analyzed its role on the removal of particulate COD in suspended growth reactors. It has been demonstrated that a large proportion of the organic matter present in sewage can be removed by biological flocculation using short hydraulic retention times and subsequent settling. This paper demonstrates that the one-dimensional limiting flux theory may be useful for coupling the sludge settling properties with the aeration tank behavior, and is a reasonable first approximation that can be used for activated sludge system design and operation.
机译:当前的活性污泥模型认为,通过悬浮生长去除可生物降解的有机物包括微生物絮凝物中有机颗粒的快速啮合,将复杂的有机分子水解成易于生物降解的有机物质以及溶解的有机物质的氧化。所有模型均假设水解是限速步骤,但没有一个模型考虑生物絮凝动力学和污泥沉降特性在定义活性污泥运行参数中可能发挥的作用。几位研究人员研究了生物絮凝的动力学,并分析了其在悬浮生长反应器中去除颗粒状COD的作用。已经证明,通过使用短的水力停留时间并随后沉降的生物絮凝可以去除污水中存在的大部分有机物。本文证明了一维极限通量理论可能对污泥沉降特性与曝气池性能的耦合有用,并且是可以用于活性污泥系统设计和运行的合理的第一近似值。

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