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首页> 外文期刊>International Journal of Environmental Science and Technology >Analysis of simulation tools and optimization of the operational conditions for biofilm activated sludge industrial process
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Analysis of simulation tools and optimization of the operational conditions for biofilm activated sludge industrial process

机译:生物膜活性污泥工业过程仿真工具及优化仿真工具及优化

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摘要

Two simulation tools for industrial wastewater treatment plan using a biofilm activated sludge process are contrasted in this paper; biofilm activated sludge consists of moving bed biofilm reactor followed by conventional activated sludge. Wastewater treatment simulator software (BioWin) and general chemical engineering process software with an integrated mathematical model (Aspen Custom Modeler) are used as simulation tools under different configurations of wastewater treatment plant and influent conditions. The simulated results using BioWin do not fit the experimental concentrations of chemical oxygen demand and total suspension solids from a full-scale biofilm activated sludge process for cellulose and viscose plant wastewaters; however, using Aspen Custom Modeler the simulated results fit adequately. The differences between the two software are explained by the consideration or not of the predation and hydrolysis phenomena in the mathematical model. The trade-off between the models complexity and the goodness in the adjustment of the results shows that in the biofilm activated sludge process the inclusion of predation in the mathematical model becomes essential. The optimization tool included in Aspen Custom Modeler is selected to optimize the operational conditions using three objective functions: minimization of nutrients in the effluent, minimization of sludge production and maximization of excess sludge concentration. Operating cost of the process can be reduced up to 10% considering the optimal conditions proposed by the optimization tool.
机译:本文采用生物膜活性污泥工艺的工业废水处理计划的两种仿真工具;生物膜活性污泥由移动床生物膜反应器组成,然后进行常规活性污泥。污水处理模拟器软件(Biowin)和具有集成数学模型(ASPEN定制建模器)的一般化学工程过程软件用作污水处理厂和流入条件的不同配置下的仿真工具。使用BiOWIN的模拟结果不符合来自纤维素和粘胶厂废水的全尺寸生物膜活性污泥工艺的化学需氧量和总悬浮固体的实验浓度;但是,使用Aspen自定义建模器模拟结果充分适应。两种软件之间的差异由数学模型中的捕食和水解现象的考虑或不进行解释。模型复杂性与调整方面的良好之间的权衡表明,在生物膜激活的污泥过程中,在数学模型中包含捕食变得必不可少。选择在ASPEN定制建模器中的优化工具使用三种目标功能优化操作条件:最小化流出物中的营养素,最小化污泥生产和过量污泥浓度的最大化。考虑到优化工具提出的最佳条件,该过程的运营成本可降低至10%。

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