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Gross changes in reconstructions of historic land cover/use for Europe between 1900 and 2010

机译:1900年至2010年间欧洲历史土地覆被/用途的重建发生的重大变化

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Historic land-cover/use change is important for studies on climate change, soil carbon, and biodiversity assessments. Available reconstructions focus on the net area difference between two time steps (net changes) instead of accounting for all area gains and losses (gross changes). This leads to a serious underestimation of land-cover/use dynamics with impacts on the biogeochemical and environmental assessments based on these reconstructions. In this study, we quantified to what extent land-cover/use reconstructions underestimate land-cover/use changes in Europe for the 1900-2010 period by accounting for net changes only. We empirically analyzed available historic land-change data, quantified their uncertainty, corrected for spatial-temporal effects and identified underlying processes causing differences between gross and net changes. Gross changes varied for different land classes (largest for forest and grassland) and led to two to four times the amount of net changes. We applied the empirical results of gross change quantities in a spatially explicit reconstruction of historic land change to reconstruct gross changes for the EU27 plus Switzerland at 1km spatial resolution between 1950 and 2010. In addition, the reconstruction was extended back to 1900 to explore the effects of accounting for gross changes on longer time scales. We created a land-change reconstruction that only accounted for net changes for comparison. Our two model outputs were compared with five commonly used global reconstructions for the same period and area. In our reconstruction, gross changes led in total to a 56% area change (ca. 0.5%yr(-1)) between 1900 and 2010 and cover twice the area of net changes. All global reconstructions used for comparison estimated fewer changes than our gross change reconstruction. Main land-change processes were cropland/grassland dynamics and afforestation, and also deforestation and urbanization.
机译:历史性的土地覆盖/利用变化对于研究气候变化,土壤碳和生物多样性评估非常重要。可用的重建着眼于两个时间步长之间的净面积差(净变化),而不是考虑所有面积的得失(总变化)。这导致对土地覆盖/利用动态的严重低估,从而影响了基于这些重建的生物地球化学和环境评估。在这项研究中,我们仅考虑了净变化,就量化了1900年至2010年期间欧洲的土地覆盖/利用重建低估了多少程度。我们根据经验分析了可用的历史土地变化数据,量化了其不确定性,校正了时空影响,并确定了导致总变化与净变化之间差异的潜在过程。不同土地类别的总变化(最大的是森林和草原)各不相同,导致净变化的数量是其两倍至四倍。我们将总变化量的经验结果应用到历史土地变化的空间显式重建中,以1950年至2010年之间以1 km的空间分辨率重建EU27和瑞士的总变化。此外,该重建被扩展到1900年以探讨其影响。较长时间范围内的总变化的说明。我们创建了一个土地变化重建项目,只考虑了净变化以进行比较。我们将两个模型输出与同一时期和同一地区的五个常用全局重建进行了比较。在我们的重建工作中,总变化导致1900年至2010年间总面积变化达到56%(约0.5%yr(-1)),覆盖了净变化面积的两倍。用于比较的所有全球重建估计的变化都少于我们的总变化重建。土地变化的主要过程是耕地/草地动态和植树造林,以及森林砍伐和城市化。

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