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解决山区森林生态系统服务的干扰风险。

Addressing disturbance risk to mountain forest ecosystem services.

机构信息

ETH Zurich, Institute for Landscape and Spatial Development, Planning of Landscape and Urban Systems (PLUS), Stefano-Franscini Platz 5, 8093, Zürich, Switzerland; WSL Institute for Snow and Avalanche Research SLF, Flüelastrasse 11, 7260, Davos Dorf, Switzerland.

WSL Institute for Snow and Avalanche Research SLF, Flüelastrasse 11, 7260, Davos Dorf, Switzerland.

出版信息

J Environ Manage. 2021 Oct 15;296:113188. doi: 10.1016/j.jenvman.2021.113188. Epub 2021 Jul 2.

Abstract

Ecosystem service (ES) mapping has been developed with the aim of supporting ecosystem management, but ES maps often lack information about uncertainty and risk, which is essential for decision-making. In this paper, we use a risk-based approach to map ES in mountain forests, which are experiencing an increasing rate of natural disturbances, such as windthrow, bark beetle outbreaks, and forest fires. These disturbances affect the capacity of forests to provide essential ecosystem services, such as protection from natural hazards, wood production, and carbon sequestration, thus posing a challenge for forest management. At the same time, disturbances may also have a positive effect on certain services, e.g. by improving habitats for species that rely on dead wood. We integrate forests' susceptibility to natural disturbances into probabilistic Bayesian Network models of a set of ES (avalanche protection, carbon sequestration, recreation, habitats, and wood production), which combine information from remote sensing, social media and in-situ data, existing process-based models, and local expert knowledge. We use these models to map the level of the services and the associated uncertainties under scenarios with and without natural disturbances in two case study areas in the Swiss Alps. We use clustering to identify bundles of risk to ES, and compare the patterns of risk between the non-protected area of Davos and the strictly protected area of the Swiss National park with its surroundings. The spatially heterogeneous pattern of risk to ES reflects topographic variability and the forest characteristics that drive disturbance susceptibility, but also the demand for ecosystem services. In the landscape of Davos, the most relevant risks to ES are related to decreases in the protection against avalanches and carbon sequestration, as well as some risk to wood production and recreation. In the strictly protected Swiss National Park, the overall level of ES risk is lower, with an increase in habitat quality under the disturbance scenario. This risk-based approach can help identify stands with high levels of ES that are particularly susceptible to disturbances, as well as forests with a more stable ES provision, which can help define priorities in forest management planning.

摘要

生态系统服务(ES)制图旨在支持生态系统管理,但 ES 图往往缺乏有关不确定性和风险的信息,而这对于决策至关重要。在本文中,我们使用基于风险的方法来绘制山区森林的 ES 图,这些森林正经历着越来越多的自然干扰,如风倒、树皮甲虫爆发和森林火灾。这些干扰会影响森林提供基本生态系统服务的能力,例如免受自然灾害、木材生产和碳封存的保护,从而对森林管理构成挑战。同时,干扰也可能对某些服务产生积极影响,例如通过改善依赖枯木的物种的栖息地。我们将森林对自然干扰的易感性纳入一系列 ES(雪崩保护、碳封存、娱乐、栖息地和木材生产)的概率贝叶斯网络模型中,这些模型结合了遥感、社交媒体和现场数据、现有的基于过程的模型和当地专家知识。我们使用这些模型在两个瑞士阿尔卑斯山案例研究区的有自然干扰和无自然干扰的情景下,绘制服务水平及其相关不确定性的地图。我们使用聚类来识别 ES 风险的捆绑包,并比较达沃斯非保护区和瑞士国家公园及其周边严格保护区之间的风险模式。ES 风险的空间异质性模式反映了地形变异性和驱动干扰易感性的森林特征,但也反映了对生态系统服务的需求。在达沃斯的景观中,对 ES 最相关的风险与雪崩保护和碳封存的减少以及一些木材生产和娱乐风险有关。在严格保护的瑞士国家公园中,ES 风险的整体水平较低,在干扰情景下栖息地质量增加。这种基于风险的方法可以帮助识别受干扰影响特别大的高 ES 林分,以及 ES 供应更稳定的森林,这有助于确定森林管理规划中的优先事项。

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