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用于紧凑型空气污染监测设备的金属热导率探测器的有限元模拟模型

Finite Element Simulation Model of Metallic Thermal Conductivity Detectors for Compact Air Pollution Monitoring Devices.

作者信息

Mallah Josée, Occhipinti Luigi G

机构信息

Electrical Engineering Division, Department of Engineering, University of Cambridge, Cambridge CB3 0FA, UK.

出版信息

Sensors (Basel). 2024 Jul 19;24(14):4683. doi: 10.3390/s24144683.

Abstract

Air pollution has been associated with several health problems. Detecting and measuring the concentration of harmful pollutants present in complex air mixtures has been a long-standing challenge, due to the intrinsic difficulty of distinguishing among these substances from interferent species and environmental conditions, both indoor and outdoor. Despite all efforts devoted by the scientific and industrial communities to tackling this challenge, the availability of suitable device technologies able to selectively discriminate these pollutants present in the air at minute, yet dangerous, concentrations and provide a quantitative measure of their concentrations is still an unmet need. Thermal conductivity detectors (TCDs) show promising characteristics that make them ideal gas sensing tools capable of recognising different gas analytes based on their physical fingerprint characteristics at the molecular level, such as their density, thermal conductivity, dynamic viscosity, and others. In this paper, the operation of TCD gas sensors is presented and explored using a finite element simulation of Joule heating in a sensing electrode placed in a gas volume. The results obtained show that the temperature, and hence, the resistance of the individual suspended microbridge sensor device, depends on the surrounding gas and its thermal conductivity, while the sensitivity and power consumption depend on the properties of the constitutive metal. Moreover, the electrode resistance is proven to be linearly dependent on the applied voltage.

摘要

空气污染与多种健康问题相关。由于要从干扰物质和室内外环境条件中区分出这些物质存在内在困难,检测和测量复杂空气混合物中有害污染物的浓度一直是一项长期挑战。尽管科学界和工业界为应对这一挑战付出了诸多努力,但仍未满足对合适设备技术的需求,这种技术要能够在空气中以微小但危险的浓度选择性地鉴别这些污染物,并对其浓度进行定量测量。热导检测器(TCD)展现出了有前景的特性,使其成为理想的气体传感工具,能够基于不同气体分析物在分子水平的物理指纹特征(如密度、热导率、动态粘度等)来识别它们。在本文中,通过对置于气体体积中的传感电极内焦耳热进行有限元模拟,介绍并探究了TCD气体传感器的运行情况。所得结果表明,温度以及单个悬浮微桥传感器装置的电阻取决于周围气体及其热导率,而灵敏度和功耗则取决于构成金属的特性。此外,电极电阻被证明与施加电压呈线性相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76b3/11280567/1bad803ca582/sensors-24-04683-g001.jpg

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