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Soil natural capital in europe; a framework for state and change assessment

机译:欧洲的土壤自然资本;状态和变更评估框架

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摘要

Soils underpin our existence through food production and represent the largest terrestrial carbon store. Understanding soil state-and-change in response to climate and land use change is a major challenge. Our aim is to bridge the science-policy interface by developing a natural capital accounting structure for soil, for example, attempting a mass balance between soil erosion and production, which indicates that barren land, and woody crop areas are most vulnerable to potential soil loss. We test out our approach using earth observation, modelling and ground based sample data from the European Union’s Land Use/Cover Area frame statistical Survey (LUCAS) soil monitoring program. Using land cover change data for 2000–2012 we are able to identify land covers susceptible to change, and the soil resources most at risk. Tree covered soils are associated with the highest carbon stocks, and are on the increase, while areas of arable crops are declining, but artificial surfaces are increasing. The framework developed offers a substantial step forward, demonstrating the development of biophysical soil accounts that can be used in wider socio-economic and policy assessment; initiating the development of an integrated soil monitoring approach called for by the United Nations Intergovernmental Technical Panel on Soils.
机译:土壤通过粮食生产支撑着我们的生存,并代表着最大的陆地碳库。了解应对气候和土地利用变化的土壤状态和变化是一项重大挑战。我们的目标是通过建立土壤的自然资本会计结构来弥合科学与政策之间的联系,例如,尝试在土壤侵蚀和生产之间实现质量平衡,这表明贫瘠的土地和木本作物地区最容易遭受潜在的土壤流失。我们使用地球观测,建模和来自欧盟土地利用/覆盖面积框架统计调查(LUCAS)土壤监测计划的地面样本数据来测试我们的方法。使用2000–2012年的土地覆盖变化数据,我们能够确定易变化的土地覆盖以及最易受到威胁的土壤资源。树木覆盖的土壤与最高的碳储量相关,并且在增加,而可耕作物的面积在减少,而人工地表则在增加。制定的框架向前迈出了实质性的一步,证明了可用于更广泛的社会经济和政策评估的生物物理土壤账户的发展;开始开发联合国政府间土壤技术小组要求的土壤综合监测方法。

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