首页> 外文期刊>Canadian Journal of Forest Research >Eleven-year response of foliar chemistry to chronic nitrogen and sulfur additions at the Bear Brook Watershed in Maine
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Eleven-year response of foliar chemistry to chronic nitrogen and sulfur additions at the Bear Brook Watershed in Maine

机译:在缅因州的熊溪流域,叶片化学对氮和硫的长期添加的十一年响应

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摘要

The foliar chemistry of sugar maple (Acer saccharum Marsh.), American beech (Fagus grandifolia Ehrh.), and red spruce (Picea rubens Sarg.) was studied from 1993 to 2003 at the Bear Brook Watershed in Maine (BBWM). The BBWM is a paired-watershed forestecosystem study, with one watershed treated bimonthly since 1989 with ammonium sulfate ((NH_4)_2SO_4) at a rate of 25.2 kg N-ha~(-1)-year~(-1). Foliar N concentrations were higher in all tree species within the treated watershed compared with trees within the reference watershed. Foliar Ca and Mg concentrations were lower in American beech and red spruce within the treated watershed. There were no significant differences in foliar K concentrations between watersheds. Foliar P and Mn concentration differences between watersheds were inconsistent among years. Differences in foliar N concentrations between watersheds declined over time in sugar maple but not in red spruce or American beech. Differences in foliar Ca and Mg concentrations between the treated and reference watersheds increased over time for American beech and red spruce, primarily because of a consistent decline in concentrations of these nutrients in trees within the treated watershed. No temporal trends in foliar Ca and Mg concentrationdifferences between watersheds were observed for sugar maple.
机译:从1993年至2003年,在缅因州的熊溪流域(BBWM)研究了糖枫(枫叶槭树),美国山毛榉(山茱F)和红云杉(红木云杉)的叶化学。 BBWM是一项成对流域森林生态系统研究,自1989年以来每两个月用25.2 kg N-ha〜(-1)-年〜(-1)的硫酸铵((NH_4)_2SO_4)处理一个集水区。与参考分水岭内的树木相比,经处理的分水岭内所有树木的叶片氮含量均较高。处理过的分水岭内美洲山毛榉和红云杉中的叶片钙和镁含量较低。流域之间的叶面钾浓度没有显着差异。流域之间的叶面P和Mn浓度差异多年以来不一致。随着时间的流逝,糖枫树中流域之间的叶面氮含量差异逐渐降低,但红云杉或美洲山毛榉中的差异不明显。对于美国山毛榉和红云杉,经过处理的流域和参考流域之间的叶面Ca和Mg浓度差异随时间增加,这主要是因为经过处理的流域内树木中这些养分的浓度持续下降。对于糖枫,在分水岭之间未观察到叶面Ca和Mg浓度差异的时间趋势。

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