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Modelling atmospheric OH-reactivity in a boreal forest ecosystem

机译:在北部林林生态系统中建模大气OH-反应性

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We have modelled the total atmospheric OH-reactivity in a boreal forest and investigated the individual contributions from gas phase inorganic species, isoprene, monoterpenes, and methane along with other important VOCs. Daily and seasonal variation in OH-reactivity for the year 2008 was examined as well as the vertical OH-reactivity profile. We have used SOSA; a one dimensional vertical chemistry-transport model (Boy et al., 2011a) together with measurements from Hyyti?l?, SMEAR II station, Southern Finland, conducted in August 2008. Model simulations only account for ~30–50% of the total measured OH sink, and in our opinion, the reason for missing OH-reactivity is due to unmeasured unknown BVOCs, and limitations in our knowledge of atmospheric chemistry including uncertainties in rate constants. Furthermore, we found that the OH-reactivity correlates with both organic and inorganic compounds and increases during summer. The summertime canopy level OH-reactivity peaks during night and the vertical OH-reactivity decreases with height.
机译:我们在北方森林中建模了总大气oh-反应性,并研究了气相无机物种,异戊二烯,单萜和甲烷以及其他重要VOC的个体贡献。检查2008年的OH-反应性的日常和季节变化以及垂直OH-反应性概况。我们使用过SOSA;一维垂直化学传输模型(Boy等,2011A)与Hyyti的测量有关,2008年8月在芬兰南部南部的测量。模型模拟仅占总数的约30-50%测量哦沉没,在我们看来,缺少OH反应性的原因是由于未知的未知BVOC,以及我们对大气化学知识的限制,包括速率常数的不确定性。此外,我们发现OH-反应性与有机和无机化合物相关,夏季期间增加。夏季冠层水平OH-反应性峰值在夜间和垂直OH反应性的高度降低。

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