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Effect of fog on sea salt deposition on peat soil in boreal Picea glehnii forests in Ochiishi, eastern Hokkaido, Japan

机译:雾对北海道东部大石市北白云杉林中泥炭土壤海盐沉积的影响

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摘要

We investigated seasonal changes in the chemical properties of precipitation (bulk deposition, throughfall and stem flow) in Picea glehnii forests and neighboring Sphagnum communities in three ombrotrophic mires in Ochiishi district, northern Japan, to clarify the contribution of fog to nutrient addition to mires. Na~+ and Cl~- dominated the bulk deposition, followed by Mg~(2+), Ca~(2+) and SO_4~(2-), implying an oceanic influence on mire chemistry. Differences in chemical properties among bulk deposition, throughfall and stem flow increased with proximity to the coastline. There was little difference in electrical conductivity (EC) among bulk deposition, throughfall and stem flow during the period of high fog frequency, which was approximately 17 fog days per month from June to August, but there were large differences in EC during the period of low fog frequency, which was approximately 5 fog days per month from September to November. In general, throughfall and stem flow were enriched with Na~+, Mg~(2+), Ca~(2+), Cl~- and SO_4~(2-) at the P. glehnii canopy, and seasonal trends in ionic concentration showed almost the same trend as EC. This seasonal pattern of atmospheric deposition chemistry showed that sea salt deposition on mires depends on fog occurrence. Sea salt is washed out of the atmosphere by fog when fog covers the forest canopy and, hence, throughfall and stem flow did not lead to the enrichment of chemical constituents during passage through the canopy in these mires during the season of high fog occurrence.
机译:我们调查了日本北部Ochiishi区三个云营养化泥沼中云杉云杉林和邻近的泥炭藓群落的降水化学性质的季节性变化(大量沉积,穿透和茎流),以阐明雾对泥泞中养分添加的贡献。 Na〜+和Cl〜-占主体沉积,其次为Mg〜(2 +),Ca〜(2+)和SO_4〜(2-),暗示海洋对泥潭化学的影响。靠近海岸线的地方,大块沉积物,穿透物和茎流之间的化学性质差异会增加。在高雾频率期间,大体积沉积,穿透和茎流之间的电导率(EC)几乎没有差异,从6月到8月,每月大约有17个雾日,但是在高雾频率期间,EC差异很大。低雾频率,从9月到11月,每月大约有5个雾日。一般而言,格氏对虾冠层的Na〜+,Mg〜(2 +),Ca〜(2 +),Cl〜-和SO_4〜(2-)丰富了贯穿和茎流,并且离子流量的季节性趋势浓度显示出与EC几乎相同的趋势。大气沉积化学的这种季节性模式表明,泥潭中的海盐沉积取决于雾的发生。当雾覆盖森林冠层时,海盐会被雾从大气中冲走,因此,在发生大雾的季节中,穿透和茎流在穿过这些冠层的泥潭时不会导致化学成分的富集。

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