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A Monte Carlo-based integrated model to optimize the cost and pollution reduction in wastewater treatment processes in a typical comprehensive industrial park in China

机译:基于蒙特卡洛的集成模型,可优化中国典型综合工业园区废水处理工艺的成本和减少污染

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摘要

Wastewater generated from an industrial park is usually characterized by large volumes, variation in composition, and high pollutant concentrations, and is generally toxic and difficult to biodegrade. Wastewater treatment at an industrial park includes several stages, namely, pretreatment inside factories (F-WWTPs), centralized wastewater treatment (C-WWTP), and reclaimed wastewater treatment (R-WWTP), during which the treatment efficiencies are mutually restricted. Therefore, water pollution control in industrial parks is extremely challenging. In this study, models, including those for pollutant reduction and operating costs, were established considering the F-WWTPs, C-WWTP, and R-WWTP stages at an industrial park. A Monte Carlo model was used to simulate the treatment and solve the above-mentioned models. Consequently, the characteristic values, including the extent of pollutant reduction, concentration of pollutants in the effluent, and operation costs, were predicted under optimal operating conditions of the wastewater treatment system. The established model was verified and applied to industrial park A in the Tianjin Economic-Technological Development Area in China. Based on the comparison of the above-mentioned optimization values with the sampled values as well as the theoretical analysis, the status of the wastewater treatment system in the industrial park was quantitatively evaluated to diagnose pertinent issues. Additionally, optimization and reformation strategies were proposed. Therefore, the established model can achieve optimization of pollution reduction and operation costs for the entire industrial park, thus contributing to industrial wastewater pollution control and water quality improvement. (C) 2018 Elsevier B.V. All rights reserved.
机译:工业园区产生的废水通常具有体积大,成分变化和污染物浓度高的特点,并且通常有毒且难以生物降解。工业园区的废水处理包括多个阶段,即工厂内部预处理(F-WWTP),集中废水处理(C-WWTP)和再生废水处理(R-WWTP),在这两个阶段之间,处理效率相互制约。因此,工业园区的水污染控制极具挑战性。在这项研究中,考虑了工业园区的F-WWTP,C-WWTP和R-WWTP阶段,建立了包括污染物减少和运营成本在内的模型。使用蒙特卡洛模型来模拟处理并求解上述模型。因此,在废水处理系统的最佳运行条件下,可以预测出特征值,包括污染物减少的程度,废水中污染物的浓度以及运行成本。验证了所建立的模型,并将其应用于中国天津经济技术开发区的工业园区A。基于上述优化值与采样值的比较以及理论分析,对工业园区废水处理系统的状态进行了定量评估,以诊断相关问题。此外,提出了优化和改革策略。因此,所建立的模型可以实现整个工业园区污染减排和运营成本的优化,从而有助于工业废水的污染控制和水质的改善。 (C)2018 Elsevier B.V.保留所有权利。

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