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Formaldehyde (HCHO) in air, snow and interstitial air at Concordia (East Antarctic plateau) in summer

机译:夏季康科迪亚(东南极高原)空气,雪和间隙空气中的甲醛(HCHO)

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摘要

During the 2011/12 and 2012/13 austral summers, HCHO was investigated for the first time in ambient air, snow, and interstitial air at the Concordia site, located near Dome C on the East Antarctic Plateau, by deploying an Aerolaser AL-4021 analyzer. Snow emission fluxes were estimated from vertical gradients of mixing ratios observed at 1 cm and 1 m above the snow surface as well as in interstitial air a few centimeters below the surface and in air just above the snowpack. Typical flux values range between 1 and 2 × 1012 molecules m−2 s−1 at night and 3 and 5 × 1012 molecules m−2 s−1 at noon. Shading experiments suggest that the photochemical HCHO production in the snowpack at Concordia remains negligible compared to temperature-driven air–snow exchanges. At 1 m above the snow surface, the observed mean mixing ratio of 130 pptv and its diurnal cycle characterized by a slight decrease around noon are quite well reproduced by 1-D simulations that include snow emissions and gas-phase methane oxidation chemistry. Simulations indicate that the gas-phase production from CH4 oxidation largely contributes (66%) to the observed HCHO mixing ratios. In addition, HCHO snow emissions account for ~ 30% at night and ~ 10% at noon to the observed HCHO levels.
机译:在2011/12和2012/13夏季南方,通过部署Aerolaser AL-4021,在南极东部高原Dome C附近的Concordia站点首次对HCHO进行了环境空气,雪和间质性空气调查。分析仪。根据在雪表面上方1 cm和1 m处以及在表面以下几厘米处的间隙空气中以及在积雪上方的空气中观察到的混合比的垂直梯度,估计了雪排放通量。典型的通量值在夜间介于1和2×1012分子m-2 s-1之间,在中午介于3和5×1012分子m-2 s-1之间。遮光实验表明,与温度驱动的空气-雪交换相比,康考迪亚积雪堆中光化学HCHO的产生仍然可以忽略不计。在包括雪排放和气相甲烷氧化化学在内的一维模拟中,在雪面以上1 m处,观测到的平均混合比为130 pptv及其以中午前后略有减少为特征的昼夜周期。模拟表明,CH4氧化产生的气相在很大程度上影响了所观察到的HCHO混合比(66%)。此外,夜间观测到的HCHO雪排放量约为观测到的HCHO水平的30%,中午约为10%。

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