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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Assessment of soil erosion vulnerability in western Europe and potentialimpact on crop productivity due to loss of soil depth using the ImpelEROmodel
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Assessment of soil erosion vulnerability in western Europe and potentialimpact on crop productivity due to loss of soil depth using the ImpelEROmodel

机译:使用ImpelEROmodel评估西欧的土壤侵蚀脆弱性以及由于土壤深度损失而对农作物生产力的潜在影响

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摘要

Soil erosion continues to be a major concern for the development of sustainable agricultural management systems. Sustainability modelling analysis for soil erosion must include not only vulnerability prediction but also address impact and response assessment, in an integrated way. This paper focuses on the impact of soil erosion on crop productivity and the accommodation of agricultural use and management practices to soil protection. From the Andalucia region in Spain, soil/slope, climate and crop/management information was used to further develop an expert-systemeural-network soil erosion predicting model (named ImpelERO). Based on soil tolerance to water erosion, three regression equations were formulated to examine the effects of soil depth loss on crop productivity reduction. Also, a computerised procedure was developed to find a combination of management practices which would minimise soil loss in each field-unit. The overall approach of ImpelERO was applied in 20 selected benchmark sites from western Europe to quantify the soil erosion vulnerability with several crops, the impact of soil erosion on crop production, and the optimum management strategies. In the Mediterranean sites, soil losses reach an average of almost 50 Mg ha(-1) per year, the potential impact of soil erosion on the crop productivity was very important (up to 48% reduction in the 2050 time horizon), and the farming practices can be widely modified to protect environmental qualities. The results of this benchmark site analysis of soil erosion, however, must not be extrapolated to large geographical areas without additional spatialisation studies.
机译:水土流失仍然是发展可持续农业管理系统的主要关切。针对土壤侵蚀的可持续性建模分析不仅必须包括脆弱性预测,而且还必须以综合方式解决影响和响应评估。本文着眼于土壤侵蚀对作物生产力的影响以及农业使用和管理实践对土壤保护的适应性。来自西班牙安达卢西亚地区的土壤/坡度,气候和作物/管理信息被用于进一步开发专家系统/神经网络的土壤侵蚀预测模型(称为ImpelERO)。根据土壤对水蚀的耐受性,制定了三个回归方程,以检验土壤深度损失对作物减产的影响。此外,还开发了一种计算机化程序,以找到管理实践的组合,以最大程度地减少每个田间单位的土壤流失。 ImpelERO的整体方法已应用于西欧的20个选定基准站点,以量化几种作物的土壤侵蚀脆弱性,土壤侵蚀对作物生产的影响以及最佳管理策略。在地中海地区,土壤流失每年平均达到近50 Mg ha(-1),土壤侵蚀对农作物生产力的潜在影响非常重要(2050年的时间减少多达48%),可以广泛修改耕作方式,以保护环境质量。但是,如果不进行其他空间化研究,则不得将这一土壤侵蚀基准站点分析的结果外推到较大的地理区域。

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