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首页> 外文期刊>Journal of Environmental Management >Harnessing landscape heterogeneity for managing future disturbance risks in forest ecosystems
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Harnessing landscape heterogeneity for managing future disturbance risks in forest ecosystems

机译:利用景观异质性管理森林生态系统中的未来干扰风险

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摘要

In order to prevent irreversible impacts of climate change on the biosphere it is imperative to phase out the use of fossil fuels. Consequently, the provisioning of renewable resources such as timber and biomass from forests is an ecosystem service of increasing importance. However, risk factors such as changing disturbance regimes are challenging the continuous provisioning of ecosystem services, and are thus a key concern in forest management. We here used simulation modeling to study different risk management strategies in the context of timber production under changing climate and disturbance regimes, focusing on a 8127 ha forest landscape in the Northern Front Range of the Alps in Austria. We show that under a continuation of historical management, disturbances from wind and bark beetles increase by +39.5% on average over 200 years in response to future climate change. Promoting mixed forests and climate-adapted tree species as well as increasing management intensity effectively reduced future disturbance risk. Analyzing the spatial patterns of disturbance on the landscape, we found a highly uneven distribution of risk among stands (Gini coefficients up to 0.466), but also a spatially variable effectiveness of silvicultural risk reduction measures. This spatial variability in the contribution to and control of risk can be used to inform disturbance management: Stands which have a high leverage on overall risk and for which risks can effectively be reduced (24.4% of the stands in our simulations) should be a priority for risk mitigation measures. In contrast, management should embrace natural disturbances for their beneficial effects on biodiversity in areas which neither contribute strongly to landscape-scale risk nor respond positively to risk mitigation measures (16.9% of stands). We here illustrate how spatial heterogeneity in forest landscapes can be harnessed to address both positive and negative effects of changing natural disturbance regimes in ecosystem management.
机译:为了防止气候变化对生物圈的不可逆转的影响,必须逐步淘汰化石燃料的使用。因此,从森林提供木材和生物质等可再生资源是一项日益重要的生态系统服务。但是,诸如不断变化的干扰制度等风险因素正在挑战不断提供生态系统服务,因此成为森林管理中的关键问题。我们在这里使用模拟模型来研究气候变化和干扰情况下木材生产中的不同风险管理策略,重点是奥地利阿尔卑斯山北麓山脉的8127公顷森林景观。我们表明,在继续进行历史管理的过程中,响应未来的气候变化,风和树皮甲虫的干扰在200年中平均增加了39.5%。促进混交林和适应气候变化的树种以及增加管理强度,可以有效降低未来的干扰风险。分析景观扰动的空间格局,我们发现林分之间的风险高度不均匀分布(基尼系数最高为0.466),但营林措施减少风险的效果也存在空间差异。这种对风险的贡献和对风险的控制的空间可变性可以用于干扰管理:优先考虑总体风险高且可以有效降低风险的展台(在我们的模拟中占24.4%)降低风险的措施。相比之下,管理部门应接受自然干扰,因为它们对既不会对景观规模风险产生重大影响也对缓解风险的措施没有积极反应的区域(占林分的16.9%)具有积极的影响。我们在这里说明如何利用森林景观的空间异质性来解决生态系统管理中不断变化的自然干扰制度的正面和负面影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第1期|46-56|共11页
  • 作者单位

    Institute of Silviculture, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences (BOKU) Vienna;

    Institute of Silviculture, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences (BOKU) Vienna;

    Institute of Silviculture, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences (BOKU) Vienna;

    Institute of Silviculture, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences (BOKU) Vienna;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Risk management; Timber production; Landscape management; Climate change impacts; Forest disturbance regimes; iLand;

    机译:风险管理;木材生产;景观管理;气候变化影响;森林干扰制度;土地;

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