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IR fiber optic evanescent field sensors for gas monitoring

机译:用于天然气监测的红外光学蒸发场传感器

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In this work, the main emphasis is given to the development and optimization of new fiber optic sensors for on-line gas monitoring and gas analysis. Gaseous halogenated hydrocarbons such as dichlorodifluoromethane (R 12) and trifluoromethane (R 23) have been investigated with a sensor system based on polymer coated silver halide fibers. Calibration curves down to a concentration of 0.1% have been established. Polyisobutylene, ethylene/propylene copolymer and polydimethylsiloxane have been tested according to their diffusion properties accompanied by the determination of the diffusion coefficient of gases inside the polymer layer. Particular attention is given to the application of sapphire fibers for high temperature gas sensors enabling the assignment of fiber optic sensors for the measurement of hydrocarbons like methane and butane under rough conditions. Temperature dependent calibration curves (20 to 300 degrees C) in the low percentage concentration range and the pressure dependence of the methane absorption at 3017 cm$+$MIN@1$/ could be obtained.
机译:在这项工作中,主要重点是新型光纤传感器的开发和优化,用于在线气体监测和气体分析。已经研究了基于聚合物涂覆的卤化银纤维的传感器系统研究了诸如二氯二氟甲烷(R 12)和三氟甲烷(R 23)的气态卤代烃。已经建立了校准曲线浓度为0.1%。根据其扩散性能测试聚异丁烯,乙烯/丙烯共聚物和聚二甲基硅氧烷伴随着聚合物层内部的气体的扩散系数的扩散性能。特别注意适用于高温气体传感器的蓝宝石纤维,使得能够在粗糙条件下测量甲烷和丁烷如甲烷和丁烷的烃类的分配。依赖于温度的校正曲线在低百分比浓度范围(20到300度C)和3017厘米$ + $ MIN @ $ 1 /甲烷吸收压力的依赖性可以得到的。

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