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首页> 外文期刊>Environmental Science and Pollution Research >Modeling and performance improvement of an anaerobic-anoxic/nitrifying-induced crystallization process via the multi-objective optimization method
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Modeling and performance improvement of an anaerobic-anoxic/nitrifying-induced crystallization process via the multi-objective optimization method

机译:通过多目标优化方法进行厌氧/硝化诱导的结晶过程的建模与性能改进

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摘要

The trade-off between energy savings and emission reductions of an activated sludge process is a multi-objective problem relating to several potentially conflicting objectives. Therefore, the optimal modification of an anaerobic-anoxic/nitrifying/induced crystallization (A2N-IC) process by multi-objective optimization method was studied in this work. The multi-objective optimization model comprised three evaluative indices, (effluent quality (EQ), operation cost (OC), and total volume (TV) of structures), and 14 process parameters (decision variables) solving by non-dominated sorting genetic algorithm II (NSGA-II) in MATLAB. The trade-off relationships among EQ, OC, and TV were investigated under 30 days of dynamic influent with different constraint conditions. A series of Pareto solutions were obtained, and one Pareto solution was selected for further analysis. Results showed improved effluent concentrations of chemical oxygen demand (COD), total nitrogen (TN), ammonia-nitrogen (NH4 (+)-N), and total phosphorous (TP) under the optimized strategy compared to the original strategy, where the average effluent concentrations decreased by 2.22, 0.47, 0.13, and 0.02 mg/L, respectively. The values of EQ and OC decreased from 0.015 kg/day and 0.15 Ayen/m(3) to 0.0023 kg/day and 0.12 Ayen/m(3), respectively, while the TV increased from 0.31 to 0.33 m(3). These results indicated that the multi-objective optimization method is useful for modifying activated sludge processes.
机译:能量储蓄过程之间的折衷和激活的污泥过程的减少是与几个可能相互矛盾的目标有关的多目标问题。因此,在这项工作中研究了通过多目标优化方法的厌氧 - 氧基/硝化/诱导的结晶(A2N-IC)方法的最佳改性。多目标优化模型包括三个评估指数,(污水质量(EQ),结构成本(OC)和结构总量(TV)),并通过非主导的分类遗传算法解决的14个过程参数(决策变量) II(NSGA-II)在MATLAB中。在具有不同约束条件的动态流入的30天下,调查了EQ,OC和电视之间的权衡关系。获得了一系列帕累托溶液,选择了一种帕累托溶液进行进一步分析。结果表明,与原始策略相比,在优化策略中,改善了化学需氧量(COD),总氮(TN),总氮(TN),氨 - 氮(NH4(+) - N)和总磷(TP)的总磷浓度流出物浓度分别降低2.22,0.47,013和0.02mg / L.等式和OC的值从0.015kg /天降低,0.15a& / m(3)至0.0023kg /天,0.12a& yen& / m(3),而电视增加从0.31增加到0.33 m(3)。这些结果表明,多目标优化方法可用于改性活性污泥工艺。

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