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Simulation and optimization of a full-scale Carrousel oxidation ditch plant for municipal wastewater treatment

机译:大型卡鲁塞尔氧化沟处理城市污水的模拟与优化

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摘要

A full-scale Carrousel oxidation ditch wastewater treatment plant (WWTP) was simulated and optimized through integrating the activated sludge model 2d (ASM2d), support vector regression (SVR) and accelerating genetic algorithm (AGA). The ASM2d model after calibration and validation with the operating data was used to simulate the process. Operating parameters, including hydraulic retention times (HRTs) of anaerobic, anoxic and aerobic tanks, solids retention time (SRT) and internal recirculation ratio were subjected to optimization using SVR and AGA. The simulation results were normalized and SVR was employed to correlate the operating factors and the effluent quality. Then, the AGA approach was used to obtain the optimal operating conditions. The multiple-objective optimization with different weights indexes was adopted to achieve simultaneous nutrient removal. Compared with the present operating conditions, the HRT of the anoxic tank, the internal recirculation ratio and the SRT should be reduced, while the HRT of the aerobic tank should be prolonged to achieve better effluent quality. Such an integrated approach in this study offers an effective and useful tool to optimize the oxidation ditch process of WWTPs.
机译:通过集成2d活性污泥模型(ASM2d),支持向量回归(SVR)和加速遗传算法(AGA),模拟和优化了一个大型Carrousel氧化沟废水处理厂(WWTP)。在使用操作数据进行校准和验证之后,ASM2d模型用于模拟过程。使用SVR和AGA对包括厌氧,缺氧和好氧罐的水力停留时间(HRT),固体停留时间(SRT)和内部再循环率在内的运行参数进行了优化。对模拟结果进行了归一化,并使用SVR来关联操作因素和废水质量。然后,使用AGA方法获得最佳操作条件。采用具有不同权重指标的多目标优化来同时去除营养。与目前的操作条件相比,应降低缺氧池的HRT,内部再循环率和SRT,同时应延长有氧池的HRT以达到更好的污水质量。这项研究中的这种综合方法为优化污水处理厂的氧化沟工艺提供了有效和有用的工具。

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