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Forest canopy interactions with nucleation mode particles

机译:森林冠层与成核模式粒子的相互作用

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Ultrafine particle size distributions through a deciduous forest canopy indicate that nucleation mode particle concentrations decline with depth into the canopy, such that number concentrations at the bottom of the canopy are an average of 16% lower than those at the top. However, growth rates of nucleation mode particles (diameters 6–30 nm) are invariant with height within the canopy, which implies that the semi-volatile gases contributing to their growth are comparatively well-mixed through the canopy. Growth rates of nucleation mode particles during a meteorological drought year (2012) were substantially lower than during a meteorologically normal year with high soil water potential (2013). This may reflect suppression of actual biogenic volatile organic compound (BVOC) emissions by drought and thus a reduction in the production of condensable products during the drought-affected vegetation season. This hypothesis is supported by evidence that growth rates during the normal year exhibit a positive correlation with emissions of BVOC modeled on observed forest composition, leaf area index, temperature and photosynthetically active radiation (PAR), but particle growth rates during the drought-affected vegetation season are not correlated with modeled BVOC emissions. These data thus provide indirect evidence that drought stress in forests may reduce BVOC emissions and limit growth of nucleation mode particles to climate-relevant sizes.
机译:通过落叶林冠层的超细粒度分布表明成核模式颗粒浓度随深度衰落到树冠上,使得冠层底部的数量浓度平均低于顶部的16%。然而,成核模式颗粒(直径6-30nm)的生长速率在冠层内具有高度,这意味着对其生长的半挥发性气体通过冠层相对良好地混合。气象干旱年份(2012)期间成核模式颗粒的生长速率显着低于气象正常年度,具有高土水潜力(2013)。这可能反映抑制通过干旱的干旱实际的生物挥发性有机化合物(BVOC)排放,从而减少在受干旱影响的植被季节期间可粘稠产品的产生。这一假设得到了证据,即在正常年期间的增长率表现出与观察到的林成分,叶面积指数,温度和光合作用辐射(PAR)的BVOC排放的阳性相关性,但在受干旱影响的植被期间颗粒生长速率季节与模型BVOC排放不相关。因此,这些数据提供了间接证据,即森林中的干旱胁迫可能会降低BVOC排放,并限制成核模式颗粒的生长至气候相关尺寸。

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