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首页> 外文期刊>Journal of Cleaner Production >Data-based modeling and optimization of a hybrid column- adsorption/depth-filtration process using a combined intelligent approach
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Data-based modeling and optimization of a hybrid column- adsorption/depth-filtration process using a combined intelligent approach

机译:基于数据的建模和优化结合的智能方法的混合柱吸附/深度过滤过程

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摘要

Lack of robust techniques for optimization of hybrid separation systems is obvious in the literature. A novel hybrid approach for modeling and optimization of a hybrid process consisting of fixed-bed adsorption column (FBAC) and dead-end filtration (DEF) for the removal of methylene blue from water was presented. Artificial neural network (ANN), response surface methodology (RSM) and genetic algorithm (GA) were used for this purpose. ANN was employed to successfully approximate the break-through curves. Central composite design was used to investigate the impact of the operating variables, i.e. feed flowrate, initial concentration, adsorption bed length, and filter type on the removal rate as the objective function. RSM variables together with the operation time were considered as input parameters and the normalized concentration was defined as output of the network. A regression model was developed using RSM to correlate the experimental data. The model was then optimized via GA to maximize the removal rate at break time. The optimal removal rate was 3.79 s(-1) corresponding to OS-100 filter, 1.12 L/min flowrate, 30 cm bed length and, 40.49 mg/L initial concentration. Sobol sensitivity analysis indicated that flowrate with 43% and filter type with 41% were the most effective variables on the process performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在文献中明显缺乏用于优化混合分离系统的可靠技术。提出了一种新的混合方法,用于建模和优化由固定床吸附塔(FBAC)和死端过滤(DEF)组成的混合工艺,用于从水中去除亚甲基蓝。为此,使用了人工神经网络(ANN),响应面方法(RSM)和遗传算法(GA)。人工神经网络被用来成功近似突破曲线。中心复合设计用于研究操作变量的影响,即进料流量,初始浓度,吸附床长度和过滤器类型对去除率的影响,作为目标函数。 RSM变量与运行时间一起被视为输入参数,标准化浓度被定义为网络的输出。使用RSM开发了回归模型以关联实验数据。然后通过GA优化模型,以最大程度地提高断裂时间的去除率。最佳去除速率为对应于OS-100过滤器的3.79 s(-1),1.12 L / min流量,30 cm床长和40.49 mg / L初始浓度。 Sobol敏感性分析表明,流量43%和过滤器类型41%是影响过程性能的最有效变量。 (C)2019 Elsevier Ltd.保留所有权利。

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