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An Automated Analyzer To Measure Surface-atmosphere Exchange Fluxes Of Water Soluble Inorganic Aerosol Compounds And Reactive Trace Gases

机译:自动化分析仪,用于测量水溶性无机气溶胶化合物和反应性痕量气体的表面-大气交换通量

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摘要

Here, we present a new automated instrument for semicon-tinuous gradient measurements of water-soluble reactive trace gas species (NH_3, HN0_3, HONO, HCI, and S0_2) and their related aerosol compounds (NH_4+, N0_(3-), Cl-, S0_4~(2-)). Gas and aerosol samples are collected simultaneously attwo heights using rotating wet-annular denuders and steam-jet aerosol collectors, respectively. Online (real-time) analysis using ion chromatography (IC) for anions and flow injection analysis (FIA) for NH_(4+) and NH_3 provide a half-hourly averaged gas and aerosol gradients within each hour. Through the use of syringe pumps, IC preconcentration columns, and high-quality purified water, the system achieves detection limits (3σ-definition) underfield conditions of typically: 136/207,135/114,29/ 22,119/92, and 189/159 ng m~(-3)for NH_3/NH_4, HNO_3/NO_(3-), HONO/ N0_(2-), HCI/Cr and SO_2/SO_4(2-), respectively. The instrument demonstrates very good linearity and accuracy for liquid and selected gas phase calibrations over typical ambient concentration ranges. As shown by examples from field experiments, the instrument provides sufficient precision (3-9%), even at low ambient concentrations, to resolve vertical gradients and calculate surface-atmosphere exchange fluxes undertypical meteorological conditions of the atmospheric surface layer using the aerodynamic gradient technique.
机译:在这里,我们介绍了一种新型的自动化仪器,用于对水溶性反应性痕量气体物种(NH_3,HN0_3,HONO,HCl和SO_2)和相关气溶胶化合物(NH_4 +,N0_(3-),Cl- ,S0_4〜(2-))。分别使用旋转湿环式剥蚀仪和蒸汽喷射气溶胶收集器在两个高度同时收集气体和气溶胶样品。使用离子色谱(IC)进行阴离子在线分析(实时),以及使用NH_(4+)和NH_3进行流动注射分析(FIA)的在线(实时)分析提供每小时半小时的平均气体和气溶胶梯度。通过使用注射泵,IC预浓缩柱和高质量的纯净水,该系统在通常为136 / 207,135 / 114,29 / 22,119 / 92和189/159 ng的野外条件下可达到检测极限(3σ定义)对于NH_3 / NH_4,HNO_3 / NO_(3-),HONO / NO_(2-),HCl / Cr和SO_2 / SO_4(2-)分别为m〜(-3)。该仪器在典型的环境浓度范围内,对液相和选定的气相校准具有很好的线性和准确性。如现场实验的例子所示,该仪器即使在低环境浓度下也能提供足够的精度(3-9%),以解决垂直梯度并使用空气动力学梯度技术在大气表层的典型气象条件下计算表面-大气交换通量。

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