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考虑进水特性,开发一种用于污水处理厂优化运行的实用模型。

Developing a practical model for the optimal operation of wastewater treatment plant considering influent characteristics.

作者信息

Nazif Sara, Forouzanmehr Farhang, Khatibi Yaser

机构信息

School of Civil Engineering, College of Engineering, University of Tehran, P.O. Box 1417466191, Tehran, Iran.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(14):39764-39782. doi: 10.1007/s11356-022-24981-8. Epub 2023 Jan 5.

Abstract

Wastewater treatment plants (WWTPs) play an important role in protecting the quality of water sources. The optimum operation of WWTPs in response to continuous changes in the characteristics of the influent of the WWTP is very important, and it can improve the quality of the effluent of the WWTP. In this study, an approach for optimal operation of the WWTP has been presented considering the quantitative and qualitative variables of influent. In the proposed method, first, the simulation model of WWTP is developed and calibrated using the recorded data of its influent and effluent characteristics as well as operation conditions. Then, the influent is classified into clusters quantitatively and qualitatively k-means clustering method. In the final step, after determining the effective operation parameters, the AMOEA-MAP optimization algorithm is used to determine the optimal values of operation parameters for each cluster of influents based on its quantitative and qualitative characteristics including flow rate, COD, ammonium, and temperature. The proposed approach was implemented on a WWTP in the South of Tehran, the capital of Iran. Dissolved oxygen (DO) in the aeration tank, waste-activated sludge flow rate (Q) and the ratio of the supernatant flow rate of the sludge dewatering unit to the effluent flow rate (Q/Q) were considered as operation parameters affecting the performance of the system in removing pollutants and their optimal values were obtained as DO, 0.25-1.7 mg/l, Q, 875-2000 m/day, and Q/Q, 10-14%. Using this method, i.e., changing system operation conditions based on influent characteristics, has improved the performance of a system in reducing COD, ammonium, and nitrate in the effluent by 11-41, 17-20 and 15-34, respectively.

摘要

污水处理厂在保护水源质量方面发挥着重要作用。污水处理厂针对进水特征的持续变化进行优化运行非常重要,这可以提高污水处理厂的出水质量。在本研究中,提出了一种考虑进水定量和定性变量的污水处理厂优化运行方法。在所提出的方法中,首先,利用污水处理厂进水和出水特征以及运行条件的记录数据建立并校准其模拟模型。然后,采用定量和定性的k均值聚类方法对进水进行分类。在最后一步,在确定有效运行参数后,使用AMOEA-MAP优化算法根据进水各聚类的定量和定性特征(包括流量、化学需氧量、铵和温度)确定运行参数的最优值。所提出的方法在伊朗首都德黑兰南部的一座污水处理厂得到了应用。曝气池中的溶解氧(DO)、废弃活性污泥流量(Q)以及污泥脱水单元上清液流量与出水流量之比(Q/Q)被视为影响系统污染物去除性能的运行参数,其最优值分别为DO:0.25 - 1.7毫克/升、Q:875 - 2000立方米/天、Q/Q:10 - 14%。使用这种方法,即根据进水特征改变系统运行条件,分别将系统在降低出水化学需氧量、铵和硝酸盐方面的性能提高了11 - 41、17 - 20和15 - 34。

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