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Controls on moss evaporation in a boreal black spruce forest

机译:控制北方黑云杉林中的苔藓蒸发

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Mosses are an important component of the boreal forest, but little is known about their contribution to ecosystem carbon, water, and energy exchange. We studied the role of mosses in boreal forest evapotranspiration by conducting two experiments in a black spruce forest in Fairbanks, Alaska. Moss evaporation was measured using lysimeters filled with Hylocomium splendens or Sphagnum capillifolium. Microclimate and moisture content were varied by placing the lysimeters in different habitats (dense forest, open forest, bog), and by manipulating the water supply (no water, natural rainfall, water added). Moss evaporation rates between 1 June and 8 September averaged 0.3, 0.9, and 1.5 mm day~(-1) in the dense forest (Hylocomium), open forest (Hylocomium and Sphagnum), and bog (Sphagnum) respectively. Assuming a total forest evapotranspiration rate of 2 mm day~(-1), this study shows that moss evaporation contributes considerably to boreal black spruce forest evapotranspiration. Moss evaporation rates depended strongly on the openness of the forest and to a lesser degree on the density of the vascular plant canopy and on moss species. The strong influence of habitat suggests that microclimate is the primary factor determining moss evaporation rates. Hylocomium evaporation reacted strongly to experimental water additions, indicating that precipitation frequency is an important factor in addition to microclimate for this species. The large moss evaporation rates in this study suggest a potential cooling effect of mosses, of Sphagnum in particular.
机译:苔藓是北方森林的重要组成部分,但对其生态系统碳,水和能量交换的贡献知之甚少。通过在阿拉斯加费尔班克斯的黑云杉林中进行两个实验,我们研究了苔藓在北方森林蒸散中的作用。使用充满了Hylocomium splendens或Sphagnum capillifolium的溶菌计测量苔藓蒸发。通过将测湿仪放置在不同的生境(茂密的森林,开阔的森林,沼泽)中以及通过操纵供水(无水,自然降雨,添加水)来改变微气候和水分含量。 6月1日至9月8日之间,苔藓的蒸发速率分别在茂密的森林(Hylocomium),开阔的森林(Hylocomium和泥炭藓)和沼泽(Sphagnum)中分别为0.3、0.9和1.5 mm day〜(-1)。假设森林总蒸散量为2 mm day〜(-1),该研究表明,苔藓蒸发对北方黑云杉森林的蒸散量有很大贡献。苔藓的蒸发速度在很大程度上取决于森林的开阔度,在较小程度上取决于维管植物冠层的密度和苔藓种类。生境的强烈影响表明,微气候是决定苔藓蒸发速率的主要因素。 lo蒸发对添加水的反应强烈,表明该物种的除小气候外,沉淀频率也是重要的因素。在这项研究中,大的苔藓蒸发速率表明了苔藓,尤其是泥炭藓的潜在冷却作用。

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