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首页> 外文期刊>Forest Ecology and Management >What drives the future supply of regulating ecosystem services in a mountain forest landscape?
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What drives the future supply of regulating ecosystem services in a mountain forest landscape?

机译:是什么推动了在山林景观中调节生态系统服务的未来供应?

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Forest ecosystems provide a wide variety of ecosystem services to society. In harsh mountain environments, the regulating services of forests are of particular importance. Managing mountain forests for regulating services is a cost- and labor intensive endeavor. Yet, also unmanaged forests regulate the environment. In the context of evidence-based decision making it is thus important to scrutinize if current management recommendations improve the supply of regulating ecosystem services over unmanaged development trajectories. A further issue complicating decision making in the context of regulating ecosystem services is their high sensitivity to climate change. Climate-mediated increases in natural disturbances, for instance, could strongly reduce the supply of regulating services from forests in the future. Given the profound environmental changes expected for the coming decades it remains unclear whether forest management will still be able to significantly control the future trajectories of mountain forest development, or whether the management effect will be superseded by a much stronger climate and disturbance effect. Here, our objectives were (i) to quantify the future regulating service supply from a 6456 ha landscape in the Stubai valley in Tyrol, Austria, and (ii) to assess the relative importance of management, climate, and natural disturbances on the future supply of regulating ecosystem services. We focused our analysis on climate regulation, water regulation, and erosion regulation, and used the landscape simulation model iLand to quantify their development under different climate scenarios and management strategies. Our results show that unmanaged forests are efficient in providing regulating ecosystem services. Both climate regulation and erosion regulation were higher in unmanaged systems compared to managed systems, while water regulation was slightly enhanced by management. Overall, direct effects of climate change had a stronger influence on the future supply of regulating services than management and natural disturbances. The ability of management to control ecosystem service supply decreased sharply with the severity of future climate change. This finding highlights that forest management could be severely stymied in the future if climate change continues to proceed at its current rate. An improved quantitative understanding of the drivers of future ecosystem service supply is needed to more effectively combine targeted management efforts and natural ecosystem dynamics towards sustaining the benefits society derives from forests in a rapidly changing world.
机译:森林生态系统为社会提供了各种各样的生态系统服务。在苛刻的山环境中,森林的调节服务特别重要。管理山林用于调节服务是一种成本和劳动密集型的努力。然而,也是非拘留的森林规范环境。在基于证据的决策的背景下,如果目前的管理建议改善了在非托管开发轨迹的规范生态系统服务的供应,则仔细审查。在规范生态系统服务的背景下,在调节生态系统服务的背景下的进一步发行决策是它们对气候变化的高度敏感性。例如,气候介导的自然骚乱的增加可能会强烈减少未来森林的调节服务的供应。鉴于未来几十年预期的深刻环境变化仍然尚不清楚森林管理是否能够大大控制山林开发的未来轨迹,或者管理效果是否将被更强大的气候和干扰效果取代。在这里,我们的目标是(i)在Tyrol,奥地利蒂罗尔,奥地利的第6456 HA景观中量化了未来的调节服务供应,并评估了管理,气候和自然障碍对未来供应的相对重要性调节生态系统服务。我们专注于我们对气候调节,水监管和侵蚀调节的分析,并利用景观模拟模型ILAND在不同的气候情景和管理策略下量化其发展。我们的研究结果表明,非托管森林在提供规范生态系统服务方面是有效的。与管理系统相比,非托管系统的气候调节和侵蚀调节均较高,而管理层略有增强水规。总体而言,气候变化的直接影响对未来的监管服务供应具有更强的影响,而不是管理和自然紊乱。控制生态系统服务供应的能力大幅下降,随着未来的气候变化的严重程度。如果气候变化继续以其当前汇率继续进行,这一发现森林管理可能会受到严重差价的亮点。需要改进对未来生态系统服务供应的驱动程序的定量理解,以更有效地结合目标管理努力和自然生态系统动态,以维持迅速不断变化的世界中森林的福利社会。

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