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Investigating the performance of a greenhouse gas observatory in Hefei, China

机译:调查中国合肥温室天然气天文台的表现

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摘要

A ground-based high-resolution Fourier transform spectrometer (FTS) station has been established in Hefei, China to remotely measure CO2, CO and other greenhouse gases based on near-infrared solar absorption spectra. Total column measurements of atmospheric CO2 and CO were successfully obtained from July 2014 to April 2016. The spectra collected with an InSb detector in the first year were compared with those collected by an InGaAs detector from July 2015, demonstrating that InGaAs spectra have better signal-to-noise ratios and rms of spectral fitting residuals relative to InSb spectra. Consequently, the measurement precision of the retrieved XCO2 and XCO for InGaAs spectra is superior to InSb spectra, with about 0.04 and 0.09% for XCO2, and 1.07 and 2.00% for XCO within clear-sky days respectively. Daily and monthly averages of columnaveraged dry air mole fraction of CO2 show a clear seasonal cycle, while the daily and monthly averages of XCO displayed no seasonal variation. Also, we analysed the relationship of the anomalies of XCO and XCO2, found that the correlations are only observable for individual days, and the data under different prevailing wind conditions during the observations displayed weak correlation. The observations based on the high-resolution FTS were also compared with the temporally coinciding measurements taken with a low-resolution solar FTS instrument, the EM27/SUN. Ratioing the daily averaged XCO2 of EM27 and FTS gives an overall calibration factor of 0.996 +/- 0.001. We also compared ground-based observations from the Tsukuba TCCON station with our observations, the results showing that the variation in phase and seasonal amplitude of XCO2 are similar to our results, but the variation of XCO in Tsukuba is quite different from our data in Hefei. To further evaluate our retrieved data, we made use of satellite measurements. The direct comparison of our observations with the Greenhouse Gases Observing Satellite (GOSAT) data shows good agreement of daily median XCO2, with a bias of -0.52 ppm and standard deviation of 1.63 ppm. The correlation coefficient (R-2) is 0.79 for daily median XCO2 between our FTS and GOSAT observations. Daily median Orbiting Carbon Observatory 2 (OCO-2) data produce a positive bias of 0.81 ppm and standard deviation of 1.73 ppm relative to our ground-based data. Our daily median XCO2 also show strong correlation with OCO-2 data, with correlation coefficient (R-2) of 0.83. Although there were a limited number of data during the observations due to instrument downtime and adverse weather, the results confirm the suitability of the observatory for ground-based long-term measurements of greenhouse gases with high precision and accuracy, and fulfil the requirements of the Total Carbon Column Observing Network (TCCON).
机译:基于基于地面的高分辨率傅立叶变换光谱仪(FTS)站,在中国合肥,以远程测量基于近红外太阳能吸收光谱的CO2,CO和其他温室气体。大气中CO2和CO的总柱测量从2014年7月到2016年4月。与Indaas探测器从2015年7月收集的那些与Indaas探测器收集的光谱相比,表明InGaAs Spectra具有更好的信号 - 相对于INSB光谱的光谱拟合残留的噪声比率和RMS。因此,检索到的XCO2和XCO用于InGaAs光谱的测量精度优于INSB光谱,XCO2的XCO2和0.09%的XCO 2和0.09%分别在透明天天内的XCO为1.07和2.00%。每日和每月的二氧化碳的干燥空气摩尔分数的每日和每月平均分数显示出清晰的季节循环,而XCo的每日和每月平均值显示没有季节性变化。此外,我们分析了XCO和XCO2的异常的关系,发现相关性仅在观察期间仅为各个日期观察到不同的普遍风力条件下显示弱相关性。还将基于高分辨率FTS的观察结果与用低分辨率太阳能FTS仪器,EM27 / SUN拍摄的时间上相一致的测量进行了比较。与EM27和FT的日平均XCO2的比率为0.996 +/- 0.001的整体校准系数。我们还将基于Tsukuba TcCon站的基于基于Tsukuba TcCon站的观察结果与我们的观察结果进行了比较,结果表明,XCo2的阶段和季节幅度的变化与我们的结果相似,但Tsukuba的XCO的变化与我们在合肥中的数据不同。为了进一步评估我们的检索到数据,我们使用卫星测量。我们与温室气体观察卫星(GOSAT)数据的直接比较显示每日中值XCO2的良好一致,偏差为-0.52ppm,标准偏差为1.63 ppm。在我们的FTS和GOSAT观测结果之间,相关系数(R-2)为每日中位XCO2的0.79。每日中位数轨道碳观测台2(OCO-2)数据相对于我们基于地基数据产生0.81ppm的正偏差和1.73ppm的标准偏差。我们的日常中值XCO2还与OCO-2数据相关,相关系数(R-2)为0.83。虽然由于仪器停机时间和恶劣天气,观察期间有有限数量的数据,但结果证实了天文台的基于温室气体的长期测量的适用性,具有高精度和准确性,并满足了所需的要求总碳柱观察网络(TCCON)。

著录项

  • 来源
    《Atmospheric Measurement Techniques》 |2017年第7期|共17页
  • 作者单位

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Key Lab Environm Opt &

    Technol Hefei 230031 Anhui Peoples R China;

    Natl Inst Environm Studies Satellite Observ Ctr Tsukuba Ibaraki 3058506 Japan;

    Univ Wollongong Sch Chem Northfields Ave Wollongong NSW 2522 Australia;

    Univ Wollongong Sch Chem Northfields Ave Wollongong NSW 2522 Australia;

    Univ Bremen Inst Environm Phys POB 330440 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys POB 330440 D-28334 Bremen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
  • 关键词

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