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An integrated approach for tracking climate-driven changes in treeline environments on different time scales in the Valle d'Aosta,Italian Alps

机译:山谷D'Aosta,意大利阿尔卑斯山区不同时间尺度的平坦环境变化的综合方法

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摘要

Both biotic and abiotic components, characterizing the mountain treeline ecotone, respond differently to climate variations. This study aims at reconstructing climate-driven changes by analyzing soil evolution in the late Holocene and by assessing the climatic trends for the last centuries and years in a key high-altitude climatic treeline (2515 m a.s.l.) on the SW slope of the Becca di Viou mountain (Aosta Valley Region, Italy). This approach is based on soil science and dendrochronological techniques, together with daily air/soil temperature monitoring of four recent growing seasons. Direct measurements show that the ongoing soil temperatures during the growing season, at the treeline and above, are higher than the predicted reference values for the Alpine treeline. Thus, they do not represent a limiting factor for tree establishment and growth, including at the highest altitudes of the potential treeline (2625 m a.s.l.). Dendrochronological evidences show a marked sensitivity of tree-ring growth to early-summer temperatures. During the recent 10-year period 2006–2015, trees at around 2300 m a.s.l. have grown at a rate that is approximately 1.9 times higher than during the 10-year period 1810–1819, one of the coolest periods of the Little Ice Age. On the other hand, soils show only an incipient response to the ongoing climate warming, likely because of its resilience regarding the changeable environmental conditions and the different factors influencing the soil development. The rising air temperature, and the consequent treeline upward shift, could be the cause of a shift from Regosol to soil with more marked Umbric characteristics, but only for soil profiles located on the N facing slopes. Overall, the results of this integrated approach permitted a quantification of the different responses in abiotic and biotic components through time, emphasizing the influence of local station conditions in responding to the past and ongoing climate change.
机译:生物和非生物组分,表征山脉的生态藻酮,对气候变化的反应不同。本研究旨在通过分析已故全新世的土壤演变,并通过评估BECCA DI的SW坡度的关键高空气候胫骨(2515米ASL)的过去几个世纪和年度的气候趋势来重建气候驱动的变化。 Viou山(意大利奥斯塔谷地区)。这种方法是基于土壤科学和树木科学技术,以及每日空气/土壤温度监测四季增长季节。直接测量表明,在树枝枪和以上生长季节期间的持续的土壤温度高于高山三滨的预测参考值。因此,它们不代表树立建立和生长的限制因素,包括在潜在的潜在树枝的最高海拔(2625 m A.L.)。树枝状道证据表明,树木增长至早期温度的明显敏感性。在近期10年期2006 - 2015年期间,树木约为2300米A.L.以比10年期间的10年期间的速度高约1.9倍,这是小冰河时代最酷的时期之一。另一方面,土壤只是对持续的气候变暖的初始反应,可能是因为它的韧性有关可变的环境条件和影响土壤发展的不同因素。上升的空气温度和随后的三肢向上移位,可能是从雷神经转向土壤的原因,具有更明显的众所周为主的特性,而是仅针对位于斜坡上的N个面上的土壤曲线。总体而言,这种综合方法的结果允许通过时间定量非生物和生物分量中的不同反应,强调当地站点条件对过去和正在进行的气候变化的影响。

著录项

  • 来源
    《The holocene》 |2021年第10期|1525-1538|共14页
  • 作者单位

    Department of Earth Sciences “A. Desio” Università degli Studi di Milano;

    Department of Chemistry Life Sciences and Environmental Sustainability Università degli Studi di Parma|Department of Earth and Environmental Sciences Università degli Studi di Milano-Bicocca;

    Environmental Protection Agency of Aosta Valley ARPA Valle d’Aosta;

    Institute of Earth Surface Dynamics Faculty of Geosciences and the Environment Université de Lausanne;

    Institute of Earth Surface Dynamics Faculty of Geosciences and the Environment Université de Lausanne|IFP Energie Nouvelles (IFPEN) Direction Géosciences|Normandie University UNIROUEN UNICAEN CNRS;

    Department of Earth Sciences “A. Desio” Università degli Studi di Milano;

    Department of Earth and Environmental Sciences Università degli Studi di Milano-Bicocca|Istituto di Geoscienze e Georisorse Consiglio Nazionale delle Ricerche;

    Department of Earth Sciences “A. Desio” Università degli Studi di Milano;

    Department of Earth Sciences “A. Desio” Università degli Studi di Milano;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geopedology; soil temperature; dendrochronology; treeline ecotone; climate change; western Italian Alps; late Holocene;

    机译:地质化学;土壤温度;树突状况;四肢杂没;气候变化;西部意大利阿尔卑斯山;全新世;

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