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Mathematical model of electrochemical gas sensors with distributed temporal and spatial parameters and its transformation to models of the real YSZ-based sensors

机译:具有分布的时空参数的电化学气体传感器的数学模型及其向基于YSZ的真实传感器模型的转换

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摘要

The activity in the field of computer-aided optimum design in engineering of electrochemical gas sensors has been increasing steadily over the last decade. A vast range of models exist today, varying in complexity and in the number of assumptions employed. However, the emphasis in a majority of the models has been either on the transport processes or on the electrochemical processes. This manuscript presents a complete mathematical model of electrochemical gas sensors, represented as a system of the partial differential equations of parabolic and hyperbolic types and the algorithm of transfer from the complete model to models of specific sensors. A complete mathematical model shows that the physic–electro–chemical processes occurring in the electrochemical gas sensors can be described more accurately. Presented mathematical model together with the proposed algorithm provides a decision-making tool for better optimal design of the solid electrolyte gas sensors. An example of transfer from a complete model to real model of the yttria-stabilized zirconia (YSZ)-based potentiometric gas sensors has been shown for the YSZ-based oxygen sensor with Pt sensing electrode (SE) and metal–metal oxide (Me–MeO) reference electrode (RE). Verification of the adequacy of the mathematical model to real gas sensor has been evaluated by the Fisher criterion.
机译:在过去的十年中,电化学气体传感器工程中的计算机辅助优化设计领域的活动一直在稳定增长。当今存在各种各样的模型,其复杂性和采用的假设数量各不相同。但是,大多数模型的重点是运输过程或电化学过程。该手稿介绍了电化学气体传感器的完整数学模型,表示为抛物线和双曲线类型的偏微分方程组,以及从完整模型转换为特定传感器模型的算法。完整的数学模型表明,可以更准确地描述电化学气体传感器中发生的物理-化学-化学过程。提出的数学模型与所提出的算法一起为固体电解质气体传感器的最佳优化设计提供了决策工具。对于具有Pt感测电极(SE)和金属-金属氧化物(Me–的基于YSZ的氧气传感器,已显示了从基于氧化钇稳定的氧化锆(YSZ)的电位气体传感器的完整模型到实际模型的转换的示例MeO)参比电极(RE)。数学模型对实际气体传感器的适用性验证已通过Fisher准则进行了评估。

著录项

  • 来源
    《Ionics》 |2006年第2期|135-148|共14页
  • 作者

    Serge Zhuiykov;

  • 作者单位

    Commonwealth Scientific Industrial Research Organisation (CSIRO) Manufacturing and Infrastructure Technology 37 Graham Road Highett VIC 3190 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mathematical modelling; Zirconia gas sensors; Optimal design;

    机译:数学建模锆石气体传感器优化设计;

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