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Automated High-resolution Mobile Collection System for the Nitrogen Isotopic Analysis of NOx

机译:自动化高分辨率的移动收集系统用于NOx的氮同位素分析

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摘要

Nitrogen oxides (NOx = NO + NO2) are a family of atmospheric trace gases that have great impact on the environment. NOx concentrations directly influence the oxidizing capacity of the atmosphere through interactions with ozone and hydroxyl radicals. The main sink of NOx is the formation and deposition of nitric acid, a component of acid rain and a bioavailable nutrient. NOx is emitted from a mixture of natural and anthropogenic sources, which vary in space and time. The collocation of multiple sources and the short lifetime of NOx make it challenging to quantitatively constrain the influence of different emission sources and their impacts on the environment. Nitrogen isotopes of NOx have been suggested to vary amongst different sources, representing a potentially powerful tool to understand the sources and transport of NOx. However, previous methods of collecting atmospheric NOx integrate over long (week to month) time spans and are not validated for the efficient collection of NOx in relevant, diverse field conditions. We report on a new, highly efficient field-based system that collects atmospheric NOx for isotope analysis at a time resolution between 30 min and 2 hr. This method collects gaseous NOx in solution as nitrate with 100% efficiency under a variety of conditions. Protocols are presented for collecting air in urban settings under both stationary and mobile conditions. We detail the advantages and limitations of the method and demonstrate its application in the field. Data from several deployments are shown to 1) evaluate field-based collection efficiency by comparisons with in situ NOx concentration measurements, 2) test the stability of stored solutions before processing, 3) quantify in situ reproducibility in a variety of urban settings, and 4) demonstrate the range of N isotopes of NOx detected in ambient urban air and on heavily traveled roadways.
机译:氮氧化物(NOx = NO + NO2)是一类对环境有重大影响的大气微量气体。 NOx浓度通过与臭氧和羟基自由基的相互作用直接影响大气的氧化能力。 NOx的主要吸收源是硝酸的形成和沉积,硝酸是酸雨的一种成分,也是一种可生物利用的养分。 NOx是从自然和人为来源的混合物中排放出来的,这些来源的时空变化。多种排放源的组合以及NOx的短寿命使定量限制不同排放源的影响及其对环境的影响变得充满挑战。已经提出NOx的氮同位素在不同来源之间变化,这代表了理解NOx的来源和运输的潜在强大工具。但是,以前的收集大气中NOx的方法在很长(几周到一个月)的时间跨度内集成,并且在相关的各种田间条件下不能有效地收集NOx。我们报告了一种新的,高效的基于现场的系统,该系统以30分钟至2小时的时间分辨率收集大气NOx用于同位素分析。该方法在各种条件下以100%的效率收集溶液中的气态NOx(作为硝酸盐)。提出了在固定和移动条件下在城市环境中收集空气的协议。我们详细介绍了该方法的优点和局限性,并演示了该方法在该领域的应用。显示了来自多个部署的数据,这些数据包括:1)通过与原位NOx浓度测量值进行比较来评估基于现场的收集效率; 2)在处理之前测试存储的溶液的稳定性; 3)在各种城市环境中量化原位可重复性,以及4 )展示了在城市环境空气中以及在行进路线繁茂的道路上检测到的Nx的N同位素范围

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