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A Fourier transform infrared trace gas and isotope analyser for atmospheric applications

机译:用于大气应用的傅里叶变换红外线气体和同位素分析仪

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Concern in recent decades about human impacts on Earth's climate has led to the need for improved and expanded measurement capabilities of greenhouse gases in the atmosphere. In this paper we describe in detail an in situ trace gas analyser based on Fourier Transform Infrared (FTIR) spectroscopy that is capable of simultaneous and continuous measurements of carbon dioxide (CO2), methane (CH4), carbon monoxide (CO), nitrous oxide (N2O) and 13C in CO2 in air with high precision. High accuracy is established by reference to measurements of standard reference gases. Stable water isotopes can also be measured in undried airstreams. The analyser is automated and allows unattended operation with minimal operator intervention. Precision and accuracy meet and exceed the compatibility targets set by the World Meteorological Organisation – Global Atmosphere Watch for baseline measurements in the unpolluted troposphere for all species except 13C in CO2. The analyser is mobile and well suited to fixed sites, tower measurements, mobile platforms and campaign-based measurements. The isotopic specificity of the optically-based technique and analysis allows its application in isotopic tracer experiments, for example in tracing variations of 13C in CO2 and 15N in N2O. We review a number of applications illustrating use of the analyser in clean air monitoring, micrometeorological flux and tower measurements, mobile measurements on a train, and soil flux chamber measurements.
机译:近几十年来关注地球气候的人类影响导致了在大气中改善和扩大温室气体的测量能力。在本文中,我们详细描述了基于傅里叶变换红外(FTIR)光谱法的原位轨道气体分析仪,其能够同时和连续测量二氧化碳(CO2),甲烷(CH 4),一氧化碳(CO),一氧化二氮(N2O)和13℃在空气中的高精度。通过参考标准参考气体的测量来建立高精度。稳定的水同位素也可以在不羁的气流中测量。分析器是自动化的,并允许无人值守的操作,具有最小的操作员干预。精度和精度满足并超过世界气象组织设定的兼容性目标 - 全球气氛观察在二氧化碳中13C的所有物种的未污染对流层中的基线测量。分析仪是移动的,非常适合固定站点,塔测量,移动平台和基于广告系列的测量。光学技术和分析的同位素特异性允许其在同位素示踪剂实验中的应用,例如在N2O中的CO 2和15N中的13C的追踪变化。我们审查了一些应用程序,说明分析仪在清洁空气监测,微度助理磁通和塔测量中,在火车上的移动测量和土壤通量室测量中的使用。

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