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A Gaseous Nitric Acid Analyzer for the Remote Atmosphere Based on the Scrubber Difference/NO-Ozone Chemiluminescence Method

机译:基于洗涤器差异/ NO-臭氧化学发光法的偏远地区气态硝酸分析仪

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摘要

An in situ nitric acid analyzer has been designed for sensing in the remote atmosphere. Its operation is based on measuring the concentration difference between the total odd nitrogen species (NOy) and HNO3-scrubbed NOy. NOy was measured by an NO-ozone chemiluminescent detector equipped with a molybdenum converter. A temperature-controlled annular denuder coated with NaCl was used as a scrubber of gaseous HNO3. The current detection limit of the HNO3 analyzer was estimated to be 158 and 71 pptv (parts per trillion by volume) with an integration time of 2 and 10 min (2σ), respectively. The analyzer was calibrated using standard gaseous HNO3 to verify its performance. The HNO3 concentrations measured by the scrubber difference and the NO-ozone chemiluminescence methods (SDCL method) were in agreement with those obtained by the denuder method within the experimental uncertainties (more than ±4%). We conducted limited field observations of NOy and HNO3 in the remote atmosphere using the newly designed SDCL method at Cape Hedo, Okinawa, Japan.
机译:原位硝酸分析仪已设计用于在偏远大气中进行传感。其操作基于测量总奇数氮物种(NOy)和经HNO3净化的NOy之间的浓度差。通过配备有钼转化器的NO-臭氧化学发光检测器测量NOy。涂有NaCl的温度可控的环形剥蚀器用作气态HNO3的洗涤塔。 HNO3分析仪的当前检出限估计为158 pptv和71 pptv(按体积计的万亿分之一),积分时间分别为2分钟和10分钟(2σ)。使用标准气态HNO3对分析仪进行校准,以验证其性能。在实验不确定性范围内,通过洗涤器差异法和NO-臭氧化学发光法(SDCL法)测得的HNO3浓度与通过denuder法获得的浓度一致。我们在日本冲绳Cape Hedo使用新设计的SDCL方法对偏远地区的NOy和HNO3进行了有限的现场观察。

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