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Remote sensing for mapping ecosystem services to support evaluation of ecological restoration interventions in an arid landscape

机译:用于映射生态系统服务的遥感,以支持干旱景观中生态恢复干预的评估

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Considerable efforts and resources are being invested in integrated conservation and restoration interventions in rural arid areas. Empirical research for quantifying ecosystem services - nature's benefits to people - is essential for evaluating the range of benefits of ecological restoration and to support its use in natural resource management. Satellite remote sensing (RS) can be used to monitor interventions, especially in large and remote areas. In this study we used field measurements, RS-based information from Sentinel-2 imagery together with soil and terrain data, to estimate ecosystem service supply and evaluate integrated ecological restoration interventions. We based our research on the arid, rural landscape of the Baviaanskloof Hartland Bawarea Conservancy, South Africa, where several integrated interventions have been implemented in areas where decades of small livestock farming has led to extensive land degradation. Interventions included i) long term livestock exclusion, ii) revegetating of degraded areas, iii) a combination of these two, and iv) essential oil production as alternatives to goat and sheep farming. We assessed six ecosystem services linked to the objectives of the interventions: erosion prevention, climate regulation, regulation of water flows, provision of forage, biomass for essential oil production, and the sense of place through presence of native species. We first estimated the ecosystem service supply based on field measurements. Secondly, we explored the relationships between ecosystem services quantities derived from the field measurements with 13 Sentinel-2 indices and four soil and terrain variables. We then selected the best fitting model for each ecosystem service. Finally, we compared the supply of ecosystem services between intervened and non-intervened sites. Results showed that models based on Sentinel-2 indices, combined with slope information, can estimate ecosystem services supply in the study area even when the levels of field-based ecosystem services supplies are low. The RS-based models can assess ecosystem services more accurately when their indicators mainly depend on green vegetation, such as for erosion prevention and provision of forage. The agricultural fields presented high variability between plots on the provision of ecosystem services. The use of Sentinel-2 vegetation indices and terrain data to quantify ecosystem services is a first step towards improving the monitoring and assessment of restoration interventions. Our results showed that in the study area, livestock exclusion lead to a consistent increase in most ecosystem services.
机译:正在投入大量努力和资源在农村干旱地区的综合保护和恢复干预措施。量化生态系统服务的实证研究 - 对人民的利益 - 对于评估生态恢复的益处以及支持其在自然资源管理中的利益至关重要。卫星遥感(RS)可用于监测干预措施,特别是在大型和偏远地区。在本研究中,我们使用现场测量,从Sentinel-2图像的基于RS的信息以及土壤和地形数据,以估算生态系统服务供应和评估综合生态恢复干预措施。我们基于我们对南非巴伐利亚汉斯基哈瓦地堡巴威伊保护舞厅的干旱,几个综合干预措施的研究,其中几十年的小牲畜养殖导致广泛的土地退化。干预措施包括i)长期牲畜排除,ii)将退化的地区,iii)的结合为山羊和绵羊养殖的替代品。我们评估了六种与干预措施目标相关的生态系统服务:侵蚀预防,气候调节,水流调控,提供饲料,生物量,以原产物种的存在感。我们首先估计了基于现场测量的生态系统服务供应。其次,我们探讨了生态系统服务数量与13个哨兵-2索引和四个土壤和地形变量的现场测量之间的关系。然后我们为每个生态系统服务选择了最佳拟合模型。最后,我们比较了介入和非干预网站之间的生态系统服务的供应。结果表明,基于Sentinel-2指数的模型结合坡度信息,也可以估算研究领域的生态系统服务供应,即使基于现场的生态系统服务耗材较低。基于RS的模型可以更准确地评估生态系统服务,当他们的指标主要取决于绿色植被,例如侵蚀预防和提供饲料。农业领域在规定提供生态系统服务的地块之间提出了高度的可变性。使用Sentinel-2植被指数和地形数据量化生态系统服务是提高恢复干预监测和评估的第一步。我们的研究结果表明,在研究领域,牲畜排除导致大多数生态系统服务的一致增加。

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