...
首页> 外文期刊>International Journal of Photoenergy >E. coli Inactivation Kinetics Modeling in a Taylor-Couette UV Disinfection Reactor
【24h】

E. coli Inactivation Kinetics Modeling in a Taylor-Couette UV Disinfection Reactor

机译:大肠杆菌灭活动力学在泰勒 - 汤紫外线消毒反应器中的塑造

获取原文
           

摘要

A simple model was developed to predict the survival behavior of E. coli subjected to UV disinfection in a Taylor-Couette reactor. The model includes the CFD evaluation of the counterrotating toroidal vortices developed within the annular space of two coaxial cylinders. The UV lamp was located within the diameter of the internal rotating cylinder. The residence time of the bacteria near the UV lamp is, therefore, a function of both the size of the vortex and its angular velocity. The effect of angular velocity on the formation of counterrotating toroidal vortices and their impact on the kinetics of UV microbial inactivation was experimentally evaluated. The kinetics of microbial inactivation follow an apparent first-order kinetic equation between 300 and 2000 revolutions per minute. Therefore, in this range of angular velocities, a set of k values (indirectly taking into account the hydrodynamic pattern and UV irradiance) was obtained for a given concentration of bacteria. Then, the set of k values was correlated with the range of angular velocities applied using the polynomial equation. A k value can be obtained for an unknown angular velocity through the polynomial equation. Therefore, a simulation curve of microbial inactivation can be obtained from the first-order kinetic equation. The efficiency of bacteria removal improves depending on the angular velocity applied. A good agreement is observed between the simulation of the survival behavior of the microorganisms subjected to UV disinfection with the experimental data.
机译:开发了一种简单的模型,以预测在泰勒 - 汤反应器中对紫外线消毒的大肠杆菌的存活行为。该模型包括在两个同轴汽缸的环形空间内开发的反向环形涡流的CFD评估。 UV灯位于内部旋转圆筒的直径内。因此,紫外灯附近的细菌的停留时间是涡流尺寸的函数及其角速度。实验评估角速度对反应环形涡旋形成的影响及其对紫外微生物失活动力学的影响。微生物失活的动力学遵循每分钟300至2000转的表观一阶动力学方程。因此,在该角速度范围内,获得一组K值(间接考虑流体动力学模式和UV辐照度),用于给定的细菌浓度。然后,将该组K值与使用多项式方程施加的角速度的范围相关。通过多项式方程可以获得k值未知的角速度。因此,可以从一阶动力学方程获得微生物失活的模拟曲线。根据所施加的角速度,细菌去除的效率改善。在用实验数据对UV消毒的微生物的存活行为模拟之间观察到良好的一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号