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An active core fiber optic sensor for detecting trace H_2S at high temperature using a cadmium oxide doped porous silica optical fiber as a transducer

机译:有源芯光纤传感器,使用氧化镉掺杂的多孔二氧化硅光纤作为传感器,可在高温下检测痕量H_2S

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An active core fiber optic sensor has been developed for detecting trace H_2S in high-temperature gas samples. This sensor uses a cadmium oxide doped porous silica optical fiber prepared with a sol-gel process as a transducer. When this porous silica optical fiber was exposed to a gas sample at high temperatures, trace H_2S in the sample diffuse into the porous fiber, and react with the doped cadmium oxide to form cadmium sulfide. The optical properties of this formed compound inside the porous silica optical fiber was investigated with fiber optic spectrometric methods. It was found that cadmium sulfide formed inside the porous silica optical fiber absorbs UV light with peak absorption wavelength at around 370 nm. This absorption signal was observable at a high temperature (450 ℃). The formed CdS inside the fiber after H_2S exposure emits strong fluorescence at room temperature with peak emission wavelength at around 500 nm. However, this fluorescence signal was quenched at the high temperature (450 ℃), and the fluorescence emission property can only be used for detecting trace H_2S at low temperature region. The UV absorption based sensor has been calibrated for detecting trace H_2S in a nitrogen gas sample, and a linear calibration curve was obtained. This sensor can be used for detecting trace H_2S in a high temperature gas sample down to sub-ppm level. Matrix gas components of gasification-derived fuel gas, such as H_2, CH_4 and CO, were found not interfering with the sensor for detecting H_2S. This sensor is expected having the potential of application for monitoring the process of cleaning fossil fuel derived fuel gas.
机译:已经开发出一种有源芯光纤传感器,用于检测高温气体样品中的痕量H_2S。该传感器使用通过溶胶-凝胶法制备的掺杂氧化镉的多孔二氧化硅光纤作为传感器。当该多孔二氧化硅光纤在高温下暴露于气体样品中时,样品中的痕量H_2S扩散到多孔纤维中,并与掺杂的氧化镉反应形成硫化镉。用光纤光谱法研究了该形成的化合物在多孔二氧化硅光纤内部的光学性质。发现在多孔二氧化硅光纤内部形成的硫化镉吸收峰值吸收波长在约370nm的UV光。该吸收信号在高温(450℃)下可观察到。暴露于H_2S后,纤维内部形成的CdS在室温下发出强荧光,峰值发射波长约为500 nm。但是,该荧光信号在高温(450℃)下被猝灭,其荧光发射特性只能用于在低温区域检测痕量H_2S。已对基于紫外线吸收的传感器进行了校准,以检测氮气样品中的痕量H_2S,并获得了线性校准曲线。该传感器可用于检测低至亚ppm级的高温气体样品中的痕量H_2S。发现气化衍生燃料气体的基质气体成分(例如H_2,CH_4和CO)不会干扰用于检测H_2S的传感器。期望该传感器具有用于监测清洁化石燃料衍生的燃料气体的过程的潜力。

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