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Simulation for Supporting Scale-Up of a Fluidized Bed Reactor for Advanced Water Oxidation

机译:支持高级水氧化流化床反应器放大的模拟

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摘要

Simulation of fluidized bed reactor (FBR) was accomplished for treating wastewater using Fenton reaction, which is an advanced oxidation process (AOP). The simulation was performed to determine characteristics of FBR performance, concentration profile of the contaminants, and various prominent hydrodynamic properties (e.g., Reynolds number, velocity, and pressure) in the reactor. Simulation was implemented for 2.8 L working volume using hydrodynamic correlations, continuous equation, and simplified kinetic information for phenols degradation as a model. The simulation shows that, by using Fe3+ and Fe2+ mixtures as catalyst, TOC degradation up to 45% was achieved for contaminant range of 40–90 mg/L within 60 min. The concentration profiles and hydrodynamic characteristics were also generated. A subsequent scale-up study was also conducted using similitude method. The analysis shows that up to 10 L working volume, the models developed are applicable. The study proves that, using appropriate modeling and simulation, data can be predicted for designing and operating FBR for wastewater treatment.
机译:流化床反应器(FBR)的模拟是使用Fenton反应完成的,用于处理废水,这是一种先进的氧化工艺(AOP)。进行模拟以确定反应器中FBR性能的特征,污染物的浓度分布以及各种突出的流体力学特性(例如雷诺数,速度和压力)。以流体动力学相关性,连续方程式和简化的酚降解动力学信息为模型,对2.8 µL工作体积进行了仿真。模拟表明,通过使用Fe 3 + 和Fe 2 + 混合物作为催化剂,污染物浓度在40–90 mg / L范围内,TOC降解率最高可达45%在60分钟内。还产生了浓度分布和流体动力学特征。随后也使用相似方法进行了放大研究。分析表明,所开发的模型适用于最大10 L的工作容积。研究证明,使用适当的建模和仿真,可以预测用于废水处理的FBR设计和运行的数据。

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