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Long-term assessment of ecosystem services at ecological restoration sites using Landsat time series

机译:利用Landsat Time Series对生态恢复网站进行生态系统服务的长期评估

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Reversing ecological degradation through restoration activities is a key societal challenge of the upcoming decade. However, lack of evidence on the effectiveness of restoration interventions leads to inconsistent, delayed, or poorly informed statements of success, hindering the wise allocation of resources, representing a missed opportunity to learn from previous experiences. This study contributes to a better understanding of spatial and temporal dynamics of ecosystem services at ecological restoration sites. We developed a method using Landsat satellite images combined with a Before-After-Control-Impact (BACI) design, and applied this to an arid rural landscape, the Baviaanskloof in South Africa. Since 1990, various restoration projects have been implemented to halt and reverse degradation. We applied the BACI approach at pixel-level comparing the conditions of each intervened pixel (impact) with 20 similar control pixels. By evaluating the conditions before and after the restoration intervention, we assessed the effectiveness of long-term restoration interventions distinguishing their impact from environmental temporal changes. The BACI approach was implemented with Landsat images that cover a 30-year period at a spatial resolution of 30 meter. We evaluated the impact of three interventions (revegetation, livestock exclusion, and the combination of both) on three ecosystem services; forage provision, erosion prevention, and presence of iconic vegetation. We also evaluated whether terrain characteristics could partially explain the variation in impact of interventions. The resulting maps showed spatial patterns of positive and negative effects of interventions on ecosystem services. Intervention effectiveness differed across vegetation conditions, terrain aspect, and soil parent material. Our method allows for spatially explicit quantification of the long-term restoration impact on ecosystem service supply, and for the detailed visualization of impact across an area. This pixel-level analysis is specifically suited for heterogeneous landscapes, where restoration impact not only varies between but also within restoration sites.
机译:通过恢复活动扭转生态退化是即将到来的十年的重要社会挑战。然而,缺乏关于恢复干预措施的有效性的证据导致成功的持续,延迟或知情知识的陈述,妨碍了解资源的明智配置,代表了从以往的经验中学习的错过机会。该研究有助于更好地理解生态修复站点的生态系统服务的空间和时间动态。我们开发了一种使用Landsat卫星图像的方法,与前后控制冲击(BACI)设计相结合,并将其应用于南非巴伐利亚斯卡福的干旱农村景观。自1990年以来,已实施各种恢复项目以停止和反转劣化。我们在像素级别将Baci方法应用于具有20个类似的控制像素的每个介入像素(冲击)的条件。通过评估恢复干预前后的条件,我们评估了长期恢复干预的有效性,区分其影响与环境时间变化的影响。 BACI方法是用Landsat图像实施,覆盖30年期间的空间分辨率为30米。我们评估了三种干预(重新植被,牲畜排除以及两者组合)对三个生态系统服务的影响;饲料提供,防腐和标志性植被的存在。我们还评估了地形特征是否可以部分解释干预措施影响的变化。由此产生的地图显示了对生态系统服务的干预措施的积极和负面影响的空间模式。植被条件,地形方面和土壤母体材料的干预效果不同。我们的方法允许在空间上明确地量化对生态系统服务供应的长期恢复影响,以及对区域的影响的详细可视化。这种像素级别分析专门适用于异质景观,其中恢复影响不仅在恢复位点之间变化而且也是如此。

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