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Fiber Optic Sensor for Simultaneous Determination of Atmospheric Nitrogen Dioxide, Ozone, and Relative Humidity

机译:光纤传感器,用于同时测定大气中的一氧化二氮,臭氧和相对湿度

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We describe a novel optical sensor for the simultaneous measurement of atmospheric nitrogen dioxide (NO_(2)), ozone (O_(3)), and relative humidity (RH). A transparent backing thin layer silica gel chromatographic plate impregnated with 8-amino-l-naphthol-5-sulfonic acid (ANS) is used as the collection/sensor element. The plate transmittance is probed by three discrete light emitting diodes (LEDs) centered, respectively, at 442, 525, and 850 nm. The transmission of the plate changes reversibly across visible to NIR wavelengths as the RH around the plate changes; this is the basis for a limited-resolution RH sensor. The ANS on the plate reacts to form brown and pink colored products, respectively, when it reacts with NO_(2) and O_(3). The sample air impinges on the plate via an entrance nozzle. The LEDs are alternately turned on in a preprogrammed manner and the light is brought to the impregnated face of the plate by a three-legged fiber optic. The transmitted light is detected on the obverse side of the plate. The 850 nm signal provides the RH value and optionally serves as the reference measurement for the other two wavelengths; the NO_(2) and O_(3) reaction products do not absorb at this wavelength. The absorbance at 442 and 525 nm, thus referenced against 850 nm, are used to obtain NO_(2) and O_(3) concentrations from a pair of simultaneous equations. For a sampling period of 5 min, the limits of detection (LOD) based on 3 times the standard deviation of blank responses were 0.64 and 0.42 ppbv for NO_(2) and O_(3), respectively. Data obtained with collocated commercial instruments (O_(3) induced chemiluminescence analyzer for NO_(2) and UV-absorption for O_(3)) show good agreement. Overall, this provides a viable affordable approach for inexpensive measurement of atmospheric NO_(2) and O_(3).
机译:我们描述了一种新型的光学传感器,用于同时测量大气中的二氧化氮(NO_(2)),臭氧(O_(3))和相对湿度(RH)。浸渍有8-氨基-1-萘酚-5-磺酸(ANS)的透明背衬薄层硅胶色谱板用作收集/传感器元件。平板透射率由分别位于442、525和850 nm处的三个分立发光二极管(LED)探测。随着板周围RH的变化,板的透射率在可见光到NIR波长之间可逆变化。这是分辨率有限的RH传感器的基础。当板上的ANS与NO_(2)和O_(3)反应时,它们分别反应形成棕色和粉红色产物。样品空气通过入口喷嘴撞击板上。 LED以预编程的方式交替打开,并且三脚光纤将光引入板的浸渍面。在板的正面检测到透射光。 850 nm信号提供RH值,并可选地用作其他两个波长的参考测量; NO_(2)和O_(3)反应产物在此波长下不吸收。相对于850 nm,在442和525 nm处的吸光度用于从一对联立方程中获得NO_(2)和O_(3)浓度。对于5分钟的采样时间,基于空白响应标准偏差3倍的检测限(LOD)对于NO_(2)和O_(3)分别为0.64和0.42 ppbv。使用并置的商业仪器获得的数据(O_(3)诱导化学发光分析仪用于NO_(2),UV吸收用于O_(3))显示出很好的一致性。总体而言,这为廉价地测量大气NO_(2)和O_(3)提供了一种可行的可负担方法。

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