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Parallel measurements of formaldehyde (H2CO) at the Jungfraujoch station: preliminary FTIR results and first comparison with Max-DOAS data

机译:少女峰站的甲醛(H2CO)平行测量:FTIR初步结果以及与Max-DOAS数据的首次比较

摘要

In the framework of the NORS project, a retrieval strategy for formaldehyde (H2CO) is currently under development, using measurements from ground-based high-resolution FTIR solar spectra recorded at the NDACC high altitude station of the Jungfraujoch (Swiss Alps, 46.5° N, 8.0° E, 3580m a.s.l.). According to the preliminary results, our FTIR retrieval strategy based on Tikhonov regularization has proven able to make an improvement in the process of fitting the H2CO feature within the 2833.070 – 2833.350 cm-1 microwindow from Jungfraujoch solar spectra, compared to a simple scaling. Furthermore, the retrieved total columns present a seasonal cycle averaged over 2005 – 2013 in agreement with preliminary results from UV-visible MAX-DOAS observations, ACE-FTS occultation measurements and simulations from the IMAGES and GEOS-CHEM models. However, FTIR H2CO abundances appear to be underestimated during summertime, with respect to the other data sets. In order to solve this issue, further experiments are planned.
机译:在NORS项目的框架内,目前正在开发一种甲醛(H2CO)的回收策略,该方法使用在少女峰NDACC高海拔站(瑞士阿尔卑斯山,北纬46.5°)记录的地面高分辨率FTIR太阳光谱的测量结果,8.0°E,3580m asl)。根据初步结果,与简单缩放相比,我们基于Tikhonov正则化的FTIR检索策略已证明能够改进在Jungfraujoch太阳光谱的2833.070 – 2833.350 cm-1微窗口内拟合H2CO特征的过程。此外,检索到的总列显示了2005年至2013年的平均季节周期,这与紫外线可见的MAX-DOAS观测,ACE-FTS掩星测量以及IMAGES和GEOS-CHEM模型的模拟得出的初步结果一致。但是,相对于其他数据集,夏季期间FTIR H2CO的丰度似乎被低估了。为了解决这个问题,计划进行进一步的实验。

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