Universidad Autonoma del Estado de Mexico (UAEM-CIRA), Toluca, Mexico.
Water Environ Res. 2011 Nov;83(11):2036-48.
Activated sludge modeling technology is maturing; however, currently, there exists a great need to increase its use in daily engineering practice worldwide. A good way for building the capacities of the practitioners is to promote good modeling practices and standardize the protocols. In this study, a systematic procedure was proposed to calibrate the Activated Sludge Model No. 1 (ASM1) at a large wastewater treatment plant, by which the model adequately predicted the quality of the effluent and the sludge quantities. A hydraulics model was set up and validated through a tracer test. The Vesilind settling constants were measured and combined with the default value of the flocculent zone settling parameter, to calibrate the clarifiers. A virtual anoxic tank was installed in the return activated sludge to mimic the denitrification occurring in the settlers. In ASM1, the calibrated parameters were only two influent chemical oxygen demand fractions and one kinetic constant (oxygen half-saturation coefficient).
活性污泥模型技术日趋成熟;然而,目前全世界都非常需要增加其在日常工程实践中的应用。建立从业人员能力的一个好方法是推广良好的建模实践并使协议标准化。在这项研究中,提出了一种系统的程序来校准大型污水处理厂的活性污泥模型 1(ASM1),通过该程序可以充分预测出水质量和污泥量。建立了一个水力模型,并通过示踪试验进行了验证。测量了 Vesilind 沉淀常数,并与絮状区沉淀参数的默认值结合,对澄清器进行了校准。在回流活性污泥中安装了虚拟缺氧池,以模拟在沉淀池中发生的反硝化作用。在 ASM1 中,经过校准的参数只有两个进水化学需氧量分数和一个动力学常数(氧半饱和系数)。