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Pan-European regional-scale modelling of water and N efficiencies of rapeseed cultivation for biodiesel production

机译:泛欧区域水平的生物柴油生产中油菜籽的水和氮效率模型

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The energy produced from the investment in biofuel crops needs to account for the environmental impacts on soil, water, climate change and ecosystem services. A regionalized approach is needed to evaluate the environmental costs of large-scale biofuel production. We present a regional pan-European simulation of rapeseed (Brassica napus) cultivation. Rapeseed is the European Union's dominant biofuel crop with a share of about 80% of the feedstock. To improve the assessment of the environmental impact of this biodiesel production, we performed a pan-European simulation of rapeseed cultivation at a 10 x 10 km scale with Environmental Policy Integrated Climate (EPIC). The model runs with a daily time step and model input consists of spatialized meteorological measurements, and topographic, soil, land use, and farm management practices data and information. Default EPIC model parameters were calibrated based on literature. Modelled rapeseed yields were satisfactory compared with yields at regional level reported for 151 regions obtained for the period from 1995 to 2003 for 27 European Union member countries, along with consistent modelled and reported yield responses to precipitation, radiation and vapour pressure deficit at regional level. The modelis currently set up so that plant nutrient stress is not occurring. Total fertilizer consumption at country level was compared with IFA/FAO data. This approach allows us to evaluate environmental pressures and efficiencies arising from and associated with rapeseed cultivation to further complete the environmental balance of biofuel production and consumption.
机译:投资生物燃料作物产生的能源需要考虑对土壤,水,气候变化和生态系统服务的环境影响。需要一种区域化的方法来评估大规模生物燃料生产的环境成本。我们介绍了油菜籽(Brassica napus)种植的泛欧洲区域模拟。油菜籽是欧盟的主要生物燃料作物,约占原料的80%。为了改进对这种生物柴油生产的环境影响的评估,我们使用环境政策综合气候(EPIC)在10 x 10 km的规模上对油菜籽种植进行了泛欧模拟。该模型以每天的时间步长运行,模型输入包括空间化的气象测量以及地形,土壤,土地利用以及农场管理实践数据和信息。根据文献对默认EPIC模型参数进行了校准。与1995年至2003年期间为欧盟27个成员国获得的151个区域报告的区域水平的油菜籽产量相比,模型油菜籽的产量令人满意,并且在区域级别对降雨,辐射和蒸气压赤字的产量和产量响应也得到了一致的模拟。目前已建立该模型,因此不会发生植物养分胁迫。将国家一级的肥料总消耗量与IFA / FAO数据进行了比较。这种方法使我们能够评估油菜籽种植所产生的环境压力和效率,并与之相关联,以进一步实现生物燃料生产和消费的环境平衡。

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