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Retrieval Accuracy of HCHO Vertical Column Density from Ground-Based Direct-Sun Measurement and First HCHO Column Measurement Using Pandora

机译:利用潘多拉从地面直阳测量和第一次HCHO柱测量检索HCHO垂直柱密度的检索准确性

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摘要

In the present study, we investigate the effects of signal to noise (SNR), slit function (FWHM), and aerosol optical depth (AOD) on the accuracy of formaldehyde (HCHO) vertical column density (HCHOVCD) using the ground-based direct-sun synthetic radiance based on differential optical absorption spectroscopy (DOAS). We found that the effect of SNR on HCHO retrieval accuracy is larger than those of FWHM and AOD. When SNR = 650 (1300), FWHM = 0.6, and AOD = 0.2, the absolute percentage difference (APD) between the true HCHOVCD values and those retrieved ranges from 54 (30%) to 5% (1%) for the HCHOVCD of 5.0 × 1015 and 1.1 × 1017 molecules cm−2, respectively. Interestingly, the maximum AOD effect on the HCHO accuracy was found for the HCHOVCD of 3.0 × 1016 molecules cm−2. In addition, we carried out the first ground-based direct-sun measurements in the ultraviolet (UV) wavelength range to retrieve the HCHOVCD using Pandora in Seoul. The HCHOVCD was low at 12:00 p.m. local time (LT) in all seasons, whereas it was high in the morning (10:00 a.m. LT) and late afternoon (4:00 p.m. LT), except in winter. The maximum HCHOVCD values were 2.68 × 1016, 3.19 × 1016, 2.00 × 1016, and 1.63 × 1016 molecules cm−2 at 10:00 a.m. LT in spring, 10:00 a.m. LT in summer, 1:00 p.m. LT in autumn, and 9:00 a.m. LT in winter, respectively. The minimum values of Pandora HCHOVCD were 1.63 × 1016, 2.23 × 1016, 1.26 × 1016, and 0.82 × 1016 molecules cm−2 at around 1:45 p.m. LT in spring, summer, autumn, and winter, respectively. This seasonal pattern of high values in summer and low values in winter implies that photo-oxidation plays an important role in HCHO production. The correlation coefficient (R) between the monthly HCHOVCD values from Pandora and those from the Ozone Monitoring Instrument (OMI) is 0.61, and the slope is 1.25.
机译:在本研究中,我们使用基于地面的直接调查信噪(SNR),狭缝函数(FWHM),并在甲醛的准确性(HCHO)垂直柱密度(HCHOVCD)气溶胶光学厚度(AOD)的影响基于差分吸收光谱(DOAS)-Sun合成辐射。我们发现,SNR对HCHO反演精度的影响比那些FWHM和AOD大。当SNR = 650(1300),FWHM = 0.6,AOD = 0.2,真HCHOVCD值和那些检索范围之间的绝对百分比差异(APD)54(30%)至5%(1%)的HCHOVCD 5.0×1015 1.1×1017分子CM-2中。有趣的是,在HCHO的精度最大AOD效应被发现为3.0×1016分子厘米-2 HCHOVCD。此外,我们进行了在紫外(UV)波长范围内的第一基于地面的直接阳光测量来检索在首尔使用潘多拉HCHOVCD。该HCHOVCD降低为中午12:00至在各个季节当地时间(LT),而这是在早上(上午10:00 LT)和傍晚(下午4:00 LT)高,冬季除外。最大HCHOVCD值分别为2.68×1016,3.19×1016 2.00×1016,和1.63×1016分子厘米-2在弹簧上午10点LT,在夏季上午10点LT,下午一点LT在秋季和冬季,分别上午9:00 LT。潘多拉HCHOVCD的最小值分别为1.63×1016,2.23×1016 1.26×1016,和0.82×1016分子厘米-2在约下午1时45 LT在春,夏,秋,冬,分别。在夏季和值低,冬季高值的这种季节性模式,意味着光氧化起着甲醛生产的重要作用。从潘多拉每月HCHOVCD值和来自臭氧监测仪(OMI)之间的相关系数(R)为0.61,斜率为1.25。

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