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Variability of Leaf Wetting and Water Storage Capacity of Branches of 12 Deciduous Tree Species

机译:12个落叶树种类分支的叶片润湿和储水能力的可变性

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Leaf surface wettability and factors which determine it are key in determining the water storage capacity of tree crowns and thus the interception of entire stands. Leaf wettability, expressed as the droplet inclination angle, and the surface free energy largely depend not only on the chemical composition of the leaves but also on their texture. The study concerns 12 species of trees common in Central Europe. The content of epicuticular waxes was determined in the leaves, and values ranging from 9.145 [μg/cm 2 ] for horse chestnut ( Aesculus hippocastanum L.) to 71.759 [μg/cm 2 ] for birch (Betula pendula Roth.) were obtained. Each additional μg/cm 2 increases the canopy water storage capacity by 0.067 g g ?1 . For all species, the inclination angles of water, diiodomethane and glycerin droplets to the leaf surface were measured and the surface free energy was calculated. It is shown that it is the wax content and the species that constitute independent predictors of water storage capacity. These factors explain the 95.56% effect on the value of canopy water storage capacity. The remaining 4.44% indicate non-species-related individual features or the ability to mitigate pollutants as well as possible environmental factors. Wax analyzed separately from other factors causes a slight increase (by 0.067 g/g) of S. Nevertheless, the influence of the surface condition as a result of species-related variability is decisive for the value of the canopy water storage capacity.
机译:叶面润湿性和因素确定它是确定树冠的储水能力的关键,从而拦截整个立场。叶片润湿性,表示为液滴倾角,表面自由能极大地不仅取决于叶子的化学成分,还取决于它们的纹理。该研究涉及中欧的12种树木。在叶片中测定了脱迹蜡的含量,并获得了从9.145μg/ cm 2]的值,用于桦木(Betula pendula roth的71.759μg)至71.759μg/ cm 2]。每个额外的μg/ cm 2将顶篷蓄水量增加0.067gg≤1。对于所有物种,测量水,二碘甲烷和甘油液滴到叶片表面的倾斜角,并计算出表面自由能。结果表明,它是构成储水能力的独立预测因子的蜡含量和物种。这些因素解释了对木冠蓄水量的价值的95.56%。其余的4.44%表示非物种相关的个别特征或减轻污染物以及可能的环境因素的能力。与其他因素分开分析的蜡导致S的略微增加(0.067g / g),因此,由于物种相关的可变性而导致的表面状况的影响对于冠层储水能力的价值是决定性的。

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