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Tree Response to Experimental Watershed Acidification

机译:树木对实验性流域酸化的反应

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摘要

Forest ecosystems in the Eastern USA are threatened by acid deposition rates that have increased dramatically since industrialization. We utilized two watersheds at the Fernow Experimental Forest in West Virginia to examine long-term effects of acidification on ecological processes. One watershed has been treated with ammonium sulfate (approximately twice the ambient deposition rate) since 1989 to simulate elevated acidic deposition, while the other served as a control. Prior to treatment, both watersheds were similar in age and species composition. Ten dominant overstory Prunus serotina and Liriodendron tulipifera trees were selected and cored from each watershed to measure bolewood concentrations of essential elements through time. In addition, changes in tree species basal area were analyzed utilizing 50 long-term growth plots. Results of this experiment show lower calcium and magnesium concentration and increased acidic cation concentration for both species in the treated watershed, indicating a negative treatment effect. Growth response, measured through relative growth rates of cored trees and changes in basal area from growth plots, was not as conclusive and appeared to differ by species. The resulting difference in species response indicates that acidification sensitivity is something that land managers should consider when managing forests affected by acidification.
机译:自工业化以来,美国东部的森林生态系统受到酸沉积速率的威胁。我们利用位于西弗吉尼亚州费诺实验森林的两个分水岭来研究酸化对生态过程的长期影响。自1989年以来,一个流域已经用硫酸铵处理过(大约是环境沉积速率的两倍),以模拟酸性沉积的增加,而另一个则作为对照。在处理之前,两个流域的年龄和物种组成都相似。从每个分水岭中选出10棵占主导地位的超树李子血清树和鹅掌Li树,并对其进行核芯,以测量随时间变化的檀香木中必需元素的浓度。此外,利用50个长期生长图分析了树种基础面积的变化。该实验的结果表明,在处理过的分水岭中,两种物种的钙和镁浓度较低,酸性阳离子浓度较高,表明处理效果不佳。通过有芯树的相对生长速率和生长地块的基础面积的变化来衡量生长反应,没有那么确定的结论,并且似乎因物种而异。物种反应的结果差异表明,酸化敏感性是土地经理在管理受酸化影响的森林时应考虑的问题。

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