支持氧化亚氮稳定同位素大气测量的气体参考物质

R. Hill-Pearce, Aimee Hillier, Eric B Mussell Webber, Kanokrat Charoenpornpukdee, S. O'Doherty, J. Mohn, C. Zellweger, D. Worton, P. Brewer
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摘要

摘要为了了解全球排放趋势,需要精确测量大气中氧化亚氮(N2O)的含量。分析N2O的特定位点稳定同位素组成提供了区分排放源的手段。获得准确的已知N2O量、组分和同位素组成的参考物质对于实现这些目标至关重要。我们介绍了一氧化二氮气体标准物质的发展,用于支撑大气成分和同位素比值的测量。对于325-335 nmol mol−1的大气N2O测量,世界气象组织全球大气监测(WMO-GAW)的不确定度目标是0.1 nmol mol−1的兼容性目标和0.3 nmol mol−1的扩展兼容性目标。我们还证明了这些标准物质的量分数和同位素比值的稳定性,并提出了用于标准物质分析的腔环衰谱仪的表征研究。
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Gas Reference Materials for Underpinning Atmospheric Measurements of Stable Isotopes of Nitrous Oxide
Abstract. The precise measurement of the amount fraction of atmospheric nitrous oxide (N2O) is required to understand global emission trends. Analysis of the site-specific stable isotopic composition of N2O provides a means to differentiate emission sources. The availability of accurate reference materials of known N2O amount fractions and isotopic composition is critical for achieving these goals. We present the development of nitrous oxide gas reference materials for underpinning measurements of atmospheric composition and isotope ratio. Uncertainties target the World Metrological Organisation Global Atmosphere Watch (WMO-GAW) compatibility goal of 0.1 nmol mol−1 and extended compatibility goal of 0.3 nmol mol−1, for atmospheric N2O measurements in an amount fraction range of 325–335 nmol mol−1. We also demonstrate the stability of amount fraction and isotope ratio of these reference materials and present a characterisation study of the cavity ring down spectrometer used for analysis of the reference materials.
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