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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Continuous low-maintenance CO2/CH4/H2O measurements at the Zotino Tall Tower Observatory (ZOTTO) in Central Siberia
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Continuous low-maintenance CO2/CH4/H2O measurements at the Zotino Tall Tower Observatory (ZOTTO) in Central Siberia

机译:在西伯利亚中部Zotino高塔观测台(Zotto)的连续低维护CO2 / CH4 / H2O测量

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To monitor the continental carbon cycle, a fully automated low maintenance measurement system is installed at the Zotino Tall Tower Observatory in Central Siberia (ZOTTO, 60°48' N, 89°21' E) since April 2009. A cavity ring-down spectroscopy (CRDS) analyzer continuously measures carbon dioxide (CO2) and methane (CH4) from six heights up to 301 m a.g.l. Buffer volumes in each air line remove short term CO2 and CH4 mixing ratio fluctuations associated with turbulence, and allow continuous, near-concurrent measurements from all tower levels. Instead of drying the air sample, the simultaneously measured water vapor is used to correct the dilution and pressure-broadening effects for the accurate determination of dry air CO2 and CH4 mixing ratios. The stability of the water vapor correction was demonstrated by repeated laboratory and field tests. The effect of molecular adsorption in the wet air lines was shown to be negligible. The low consumption of four calibration tanks that need recalibration only on decadal timescale further reduces maintenance. The measurement precision (accuracy) of 0.04 ppm (0.09 ppm) for CO2 and 0.3 ppb (1.5 ppb) for CH4 is compliant with the WMO recommendations. The data collected so far (until April 2010) reveals a seasonal cycle amplitude for CO2 of 30.4 ppm at the 301 m level.
机译:为了监控大陆碳循环,自2009年4月以来,在西伯利亚中部(Zotto,60°48'N,89°21',89°21'e)中,安装了全自动的低维护测量系统。一个腔翻转光谱(CRD)分析仪连续测量二氧化碳(CO2)和甲烷(CH4),高达301米AGL每个空中线中的缓冲体积清除与湍流相关的短期CO2和CH4混合比波动,并允许来自所有塔水平的连续,接近同时测量。同时测量的水蒸气而不是干燥空气样品,用于校正干燥空气CO2和CH 4混合比的精确测定稀释和压力扩大效果。通过重复的实验室和现场试验证明了水蒸气校正的稳定性。分子吸附在湿空气管中的效果显示出可忽略不计。仅在Decadal Timescale上仅需要重新校准的四个校准罐的低消耗量进一步降低了维护。对于CH4的CO2和0.3ppb(1.5 ppb)的0.04ppm(0.09ppm)的测量精度(精度)符合WMO建议。到目前为止收集的数据(直到2010年4月)揭示了301米30.4ppm的CO2季节循环幅度。

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