桉树监测气体传感器的开发:极端野火管理的辅助工具

C. Magro, Marcelo Morais, Paulo A. Ribeiro, S. Sério, Pedro Vieira, M. Raposo
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引用次数: 1

摘要

最近对加热植被释放的挥发性有机化合物(VOC)的研究表明,在特定条件下(例如,极端高温、湿度、风和地形),VOC可能会助长野火的火源,并解释火灾行为的突然变化,特别是在最易感和易燃的森林(桉树森林)中。这项工作旨在开发一种基于传感器阵列的电子鼻(电子鼻),以监测桉树中主要挥发性有机化合物桉树醇的浓度。通过将分析物注入定制的真空室系统,通过测量基于聚乙烯亚胺、聚(丙烯胺盐酸盐)和氧化石墨烯的逐层薄膜的阻抗谱来检测该目标化合物。用主成分分析法对所得结果进行了分析。开发的电子鼻传感器能够区分从411到1095 ppm范围内的不同浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Gas Sensor for Eucalyptol Supervision: A Supporting Tool for Extreme Wildfire Management
Recent research on volatile organic compounds (VOC) released by the heated vegetation has shown that, under specific conditions (e.g., extreme heat, humidity, wind, and topography), VOC might foster wildfire ignition sources and explain sudden changes in fire behavior, particularly in the most susceptible and flammable forests (eucalypt forests). This work aims to develop an electronic nose (e-nose) based on a sensor’s array to monitor the concentration of eucalyptol, the major VOC compound of the Eucalyptus globulus tree. The detection of this target compound was achieved by measuring the impedance spectra of layer-by-layer developed thin films based on polyethyleneimine, poly(allylamine hydrochloride), and graphene oxide, by injecting the analyte into a custom-made vacuum chamber system. The obtained results were analyzed by the principal component analysis method. The developed e-nose sensor was able to distinguish different concentrations in a range from 411 to 1095 ppm.
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