首页> 外文期刊>Atmospheric Measurement Techniques >COsub2/sub, CO, and CHsub4/sub measurements from tall towers in the NOAA Earth System Research Laboratory's Global Greenhouse Gas Reference Network: instrumentation, uncertainty analysis, and recommendations for future high-accuracy greenhouse gas monitoring efforts
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COsub2/sub, CO, and CHsub4/sub measurements from tall towers in the NOAA Earth System Research Laboratory's Global Greenhouse Gas Reference Network: instrumentation, uncertainty analysis, and recommendations for future high-accuracy greenhouse gas monitoring efforts

机译:NOAA地球系统研究实验室的全球温室气体参考网络中来自高塔的CO 2 ,CO和CH 4 测量:仪器,不确定性分析以及对未来高排放的建议精确的温室气体监测工作

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A reliable and precise in situ COsub2/sub and CO analysis system has been developed and deployed at eight sites in the NOAA Earth System Research Laboratory's (ESRL) Global Greenhouse Gas Reference Network. The network uses very tall ( 300 m) television and radio transmitter towers that provide a convenient platform for mid-boundary-layer trace-gas sampling. Each analyzer has three sample inlets for profile sampling, and a complete vertical profile is obtained every 15 min. The instrument suite at one site has been augmented with a cavity ring-down spectrometer for measuring COsub2/sub and CHsub4/sub. The long-term stability of the systems in the field is typically better than 0.1 ppm for COsub2/sub, 6 ppb for CO, and 0.5 ppb for CHsub4/sub, as determined from repeated standard gas measurements. The instrumentation is fully automated and includes sensors for measuring a variety of status parameters, such as temperatures, pressures, and flow rates, that are inputs for automated alerts and quality control algorithms. Detailed and time-dependent uncertainty estimates have been constructed for all of the gases, and the uncertainty framework could be readily adapted to other species or analysis systems. The design emphasizes use of off-the-shelf parts and modularity to facilitate network operations and ease of maintenance. The systems report high-quality data with 93% uptime. Recurrent problems and limitations of the current system are discussed along with general recommendations for high-accuracy trace-gas monitoring. The network is a key component of the North American Carbon Program and a useful model for future research-grade operational greenhouse gas monitoring efforts.
机译:已开发出可靠且精确的原位CO 2 和CO分析系统,并将其部署在NOAA地球系统研究实验室(ESRL)的全球温室气体参考网络的八个位置上。该网络使用很高的电视塔(> 300 m)和无线电发射塔,为中边界层痕量气体采样提供了便利的平台。每个分析仪都有三个用于轮廓采样的样品入口,每15分钟获得一个完整的垂直轮廓。一个站点的仪器套件增加了腔衰荡光谱仪,用于测量CO 2 和CH 4 。由以下公式确定,该系统在现场的长期稳定性通常优于CO 2 0.1 ppm,CO 6 ppb和CH 4 0.5 ppb。重复标准气体测量。该仪器是全自动的,并包括用于测量各种状态参数(例如温度,压力和流速)的传感器,这些参数是自动警报和质量控制算法的输入。已经为所有气体建立了详细的,随时间变化的不确定性估计,不确定性框架可以很容易地适用于其他物种或分析系统。该设计强调使用现成的部件和模块化,以促进网络操作和易于维护。系统报告的正常运行时间大于93%的高质量数据。讨论了当前系统的反复出现的问题和局限性,以及有关高精度痕量气体监测的一般建议。该网络是北美碳计划的关键组成部分,也是未来研究级运营温室气体监测工作的有用模型。

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