首页> 外文期刊>Journal of Chemical Education >Multiphase Kinetic Multilayer Model Interfaces for Simulating Surface and Bulk Chemistry for Environmental and Atmospheric Chemistry Teaching
【24h】

Multiphase Kinetic Multilayer Model Interfaces for Simulating Surface and Bulk Chemistry for Environmental and Atmospheric Chemistry Teaching

机译:用于模拟环境和大气化学教学表面和本体化学的多相动力学多层模型接口

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper presents MATLAB user interfaces for two multiphase kinetic models: the kinetic double-layer model of aerosol surface chemistry and gas-particle interactions (K2-SURF) and the kinetic multilayer model of aerosol surface and bulk chemistry (KM-SUB). Each interface has simple and user-friendly features that allow undergraduate and graduate students in physical, environmental, and atmospheric chemistry classes to learn about multiphase chemistry modeling without prior computer programming or modeling experience. It is easy to input parameters, and the simulation results are promptly displayed in the interface; thus, these model interfaces are particularly suitable for in-classroom and homework teaching applications. The model input parameters indude surface and bulk reaction rate coefficients, surface accommodation coefficient, and gas and bulk diffusivities, while model outputs include gas uptake coefficient and surface and bulk concentrations. Students can use the K2-SURF interface to simulate surface processes and the KM-SUB interface to simulate surface and bulk processes. Example simulations were performed for each interface to present atmospherically relevant applications and to demonstrate its versatility for exploring model sensitivity on various kinetic parameters. The K2-SURF interface was used to show how the rate of ozone uptake by an organic surface and temporal evolution of surface concentrations are affected by the surface accommodation coefficient, desorption lifetime, and surface reaction rate coefficient. Additionally, the KM-SUB interface was applied to demonstrate how bulk diffusivities impact the degradation kinetics of oleic acid particles, so that students can learn how the phase state (liquid vs semisolid vs glassy solid) impacts multiphase chemical kinetics. The developed K2-SURF and KM-SUB interfaces are effective tools for modeling surface and bulk reactions in college-level educational settings, helping students to obtain a deeper understanding of the complex behaviors of heterogeneous and multiphase systems.
机译:本文介绍了两种多相动力学模型的 MATLAB 用户界面:气溶胶表面化学和气体-颗粒相互作用的动力学双层模型 (K2-SURF) 和气溶胶表面和本体化学动力学多层模型 (KM-SUB)。每个界面都具有简单且用户友好的功能,允许物理、环境和大气化学课程的本科生和研究生在没有计算机编程或建模经验的情况下学习多相化学建模。易于输入参数,仿真结果在界面中及时显示;因此,这些模型接口特别适用于课堂和家庭作业教学应用。模型输入参数包括表面和体积反应速率系数、表面调节系数以及气体和体积扩散率,而模型输出包括气体吸收系数以及表面和体积浓度。学生可以使用 K2-SURF 接口来模拟表面过程,并使用 KM-SUB 接口来模拟表面和整体过程。对每个接口进行了示例仿真,以展示与大气相关的应用,并证明其在探索模型对各种动力学参数的灵敏度方面的多功能性。利用K2-SURF接口,展示了有机表面对臭氧的吸收速率和表面浓度的时间演化如何受到表面调节系数、解吸寿命和表面反应速率系数的影响。此外,还应用KM-SUB接口来演示体扩散如何影响油酸颗粒的降解动力学,以便学生了解相态(液体、半固体和玻璃固体)如何影响多相化学动力学。开发的 K2-SURF 和 KM-SUB 接口是模拟大学教育环境中表面和体反应的有效工具,帮助学生更深入地了解异质和多相系统的复杂行为。

著录项

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