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一种用于实时气体检测的便携式阵列型光纤传感仪器。

A Portable Array-Type Optical Fiber Sensing Instrument for Real-Time Gas Detection.

作者信息

Hung San-Shan, Chang Hsing-Cheng, Chang I-Nan

机构信息

Department of Automatic Control Engineering, Feng Chia University, Taichung 40724, Taiwan.

Facilities Management Center, Feng Chia University, Taichung 40724, Taiwan.

出版信息

Sensors (Basel). 2016 Dec 8;16(12):2087. doi: 10.3390/s16122087.

Abstract

A novel optical fiber array-type of sensing instrument with temperature compensation for real-time detection was developed to measure oxygen, carbon dioxide, and ammonia simultaneously. The proposed instrument is multi-sensing array integrated with real-time measurement module for portable applications. The sensing optical fibers were etched and polished before coating to increase sensitivities. The ammonia and temperature sensors were each composed of a dye-coated single-mode fiber with constructing a fiber Bragg grating and a long-period filter grating for detecting light intensity. Both carbon dioxide and oxygen sensing structures use multimode fibers where 1-hydroxy-3,6,8-pyrene trisulfonic acid trisodium salt is coated for carbon dioxide sensing and Tris(2,2'-bipyridyl) dichlororuthenium(II) hexahydrate and Tris(bipyridine)ruthenium(II) chloride are coated for oxygen sensing. Gas-induced fluorescent light intensity variation was applied to detect gas concentration. The portable gas sensing array was set up by integrating with photo-electronic measurement modules and a human-machine interface to detect gases in real time. The measured data have been processed using piecewise-linear method. The sensitivity of the oxygen sensor were 1.54%/V and 9.62%/V for concentrations less than 1.5% and for concentrations between 1.5% and 6%, respectively. The sensitivity of the carbon dioxide sensor were 8.33%/V and 9.62%/V for concentrations less than 2% and for concentrations between 2% and 5%, respectively. For the ammonia sensor, the sensitivity was 27.78%/V, while ammonia concentration was less than 2%.

摘要

开发了一种具有温度补偿功能的新型光纤阵列式传感仪器,用于实时检测氧气、二氧化碳和氨气。所提出的仪器是集成了实时测量模块的多传感阵列,适用于便携式应用。传感光纤在涂覆前进行了蚀刻和抛光,以提高灵敏度。氨气和温度传感器均由涂有染料的单模光纤组成,构建了光纤布拉格光栅和长周期滤波光栅以检测光强。二氧化碳和氧气传感结构均使用多模光纤,其中涂覆1-羟基-3,6,8-芘三磺酸三钠盐用于二氧化碳传感,涂覆二氯二(2,2'-联吡啶)钌(II)六水合物和二氯(联吡啶)钌(II)用于氧气传感。利用气体引起的荧光强度变化来检测气体浓度。通过与光电测量模块和人机界面集成,建立了便携式气体传感阵列,以实时检测气体。测量数据采用分段线性法进行处理。氧气传感器在浓度小于1.5%时的灵敏度为1.54%/V,在浓度为1.5%至6%之间时的灵敏度为9.62%/V。二氧化碳传感器在浓度小于2%时的灵敏度为8.33%/V,在浓度为2%至5%之间时的灵敏度为9.62%/V。对于氨气传感器,当氨气浓度小于2%时,灵敏度为27.78%/V。

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