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树种多样性对年轻温带人工林林冠降雨截留的影响。

Impact of tree species diversity on throughfall deposition in a young temperate forest plantation.

机构信息

Forest & Nature Lab, Department of Environment, Ghent University, Geraardsbergsesteenweg 267, 9090 Melle, Gontrode, Belgium.

Forest & Nature Lab, Department of Environment, Ghent University, Geraardsbergsesteenweg 267, 9090 Melle, Gontrode, Belgium.

出版信息

Sci Total Environ. 2022 Oct 10;842:156947. doi: 10.1016/j.scitotenv.2022.156947. Epub 2022 Jun 23.

Abstract

Throughfall deposition is an important pathway via which particles, aerosols and gases can move from the atmosphere to the forest floor, which can greatly impact forest biodiversity and functioning. Although throughfall deposition biochemistry has been well studied in forest ecosystems, less is known about how throughfall deposition is modified by tree species diversity. To disentangle the effects of tree species identity and diversity on throughfall deposition, we installed rain gauges in a 10-year-old tree diversity experiment. With these rain gauges, we monitored throughfall biweekly, and performed chemical analyses monthly for all the major ions (Na, Cl, SO-S, K, Ca, Mg, PO-P, NO-N and NH-N), for a period of one year. Based on these data, we analysed species identity (i.e. whether throughfall deposition depended on the tree species present in the overstorey), and diversity effects (i.e. whether throughfall deposition depended on tree species richness). We confirmed species identity effects on throughfall deposition. Presence of pine led to higher throughfall deposition of inorganic nitrogen, and lower amounts of phosphorus, calcium and magnesium reaching the forest floor. Additionally, species characteristics and stand structural characteristics, i.e. basal area and canopy cover, emerged as key factors driving throughfall deposition of sodium, chloride, nitrate, sulphate and potassium. Tree species diversity effects on throughfall deposition were also present, mostly via increased basal area and canopy cover, leading to increased throughfall deposition of inorganic nitrogen, sulphate, chloride, sodium and potassium. Our findings thus suggest that tree species diversity enhances throughfall deposition of most ions that we analysed, potentially increasing nutrient availability for below-canopy plant communities. Given that inorganic nitrogen and sulphur are major atmospheric pollutants, increased deposition in mixed plots might affect ecosystem functioning. Further research will be needed to determine the extent of this impact.

摘要

穿透雨沉积是一个重要的途径,通过它,颗粒、气溶胶和气体可以从大气转移到森林地面,这极大地影响了森林生物多样性和功能。尽管森林生态系统中穿透雨沉积的生物化学特性已经得到了很好的研究,但对于穿透雨沉积是如何被树种多样性所改变的了解较少。为了厘清树种身份和多样性对穿透雨沉积的影响,我们在一个 10 年生的树种多样性实验中安装了雨量计。通过这些雨量计,我们每两周监测一次穿透雨,每月对所有主要离子(Na、Cl、SO4-S、K、Ca、Mg、PO4-P、NO3-N 和 NH4-N)进行一次化学分析,为期一年。基于这些数据,我们分析了物种身份(即穿透雨沉积是否取决于林冠层中存在的树种)和多样性效应(即穿透雨沉积是否取决于树种丰富度)。我们证实了物种身份对穿透雨沉积的影响。松树的存在导致了更高的无机氮穿透雨沉积,以及更少的磷、钙和镁到达森林地面。此外,物种特征和林分结构特征,即基底面积和冠层覆盖,成为驱动钠、氯、硝酸盐、硫酸盐和钾穿透雨沉积的关键因素。树种多样性对穿透雨沉积也有影响,主要是通过增加基底面积和冠层覆盖,导致无机氮、硫酸盐、氯、钠和钾的穿透雨沉积增加。因此,我们的研究结果表明,树种多样性增强了我们分析的大多数离子的穿透雨沉积,这可能增加了林冠下植物群落的养分供应。鉴于无机氮和硫是主要的大气污染物,在混合林分中增加的沉积可能会影响生态系统功能。需要进一步的研究来确定这种影响的程度。

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