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论尺度对生态系统服务制图的影响。

On the effects of scale for ecosystem services mapping.

作者信息

Grêt-Regamey Adrienne, Weibel Bettina, Bagstad Kenneth J, Ferrari Marika, Geneletti Davide, Klug Hermann, Schirpke Uta, Tappeiner Ulrike

机构信息

Planning of Landscape and Urban Systems, Swiss Federal Institute of Technology (ETH), Stefano-Franscini-Platz 5, 8093 Zurich, Switzerland.

U.S. Geological Survey, Geosciences and Environmental Change Science Center, P.O. Box 25046, MS 980, Denver, Colorado, 80225, United States of America.

出版信息

PLoS One. 2014 Dec 30;9(12):e112601. doi: 10.1371/journal.pone.0112601. eCollection 2014.

Abstract

Ecosystems provide life-sustaining services upon which human civilization depends, but their degradation largely continues unabated. Spatially explicit information on ecosystem services (ES) provision is required to better guide decision making, particularly for mountain systems, which are characterized by vertical gradients and isolation with high topographic complexity, making them particularly sensitive to global change. But while spatially explicit ES quantification and valuation allows the identification of areas of abundant or limited supply of and demand for ES, the accuracy and usefulness of the information varies considerably depending on the scale and methods used. Using four case studies from mountainous regions in Europe and the U.S., we quantify information gains and losses when mapping five ES - carbon sequestration, flood regulation, agricultural production, timber harvest, and scenic beauty - at coarse and fine resolution (250 m vs. 25 m in Europe and 300 m vs. 30 m in the U.S.). We analyze the effects of scale on ES estimates and their spatial pattern and show how these effects are related to different ES, terrain structure and model properties. ES estimates differ substantially between the fine and coarse resolution analyses in all case studies and across all services. This scale effect is not equally strong for all ES. We show that spatially explicit information about non-clustered, isolated ES tends to be lost at coarse resolution and against expectation, mainly in less rugged terrain, which calls for finer resolution assessments in such contexts. The effect of terrain ruggedness is also related to model properties such as dependency on land use-land cover data. We close with recommendations for mapping ES to make the resulting maps more comparable, and suggest a four-step approach to address the issue of scale when mapping ES that can deliver information to support ES-based decision making with greater accuracy and reliability.

摘要

生态系统提供着人类文明赖以生存的服务,但它们的退化在很大程度上仍未得到缓解。需要有关生态系统服务(ES)供给的空间明确信息,以更好地指导决策,特别是对于山地系统而言,其特点是具有垂直梯度且地形复杂隔离度高,这使得它们对全球变化尤为敏感。虽然空间明确的ES量化和估值能够识别ES供应丰富或有限以及需求的区域,但信息的准确性和实用性会因所使用的尺度和方法而有很大差异。我们利用来自欧洲和美国山区的四个案例研究,对以粗分辨率和细分辨率(欧洲分别为250米和25米,美国分别为300米和30米)绘制碳固存、洪水调节、农业生产、木材采伐和风景优美这五种ES时的信息得失进行量化。我们分析了尺度对ES估计及其空间格局的影响,并展示了这些影响如何与不同的ES、地形结构和模型属性相关。在所有案例研究和所有服务中,精细分辨率和粗分辨率分析之间的ES估计存在显著差异。这种尺度效应对于所有ES来说并不一样强烈。我们表明,关于非聚集、孤立的ES的空间明确信息在粗分辨率下往往会丢失,且与预期相反,主要是在地形不太崎岖的地区,这就需要在这种情况下进行更精细分辨率的评估。地形崎岖度的影响也与诸如对土地利用 - 土地覆盖数据的依赖性等模型属性有关。我们最后提出了使绘制的ES地图更具可比性的建议,并提出了一种四步方法来解决绘制ES时的尺度问题,该方法能够提供信息以更准确和可靠地支持基于ES的决策制定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b63/4280228/b62b0ca0935f/pone.0112601.g001.jpg

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