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Evaluation of greenhouse gas emissions and desigi of mitigation options: a whole farm approach based on farm management data and mechanistic models

机译:温室气体排放评估和缓解方案设计:基于农场管理数据和机制模型的整个农场方法

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Agricultural activities are important sources of nitrous oxide (N20), methane (CH4) and carbon dioxide (CO_2). They contribute approximately 10% of the total emitted greenhouse gases (GhG) in the European Union. We search for evaluating GhG emissions at the farm level and designing mitigation options. As emissions occur at many stages within the farm operation, it is crucial to consider nutrient cycling and farm working. Our proposal comprises three characteristics: an integrated farm approach which combines empirical and mechanistic modelling through describing C and N fluxes through two coupled models of land use: a farmers' practices description; and system boundaries limited to the farm gate, but including also pre- and post-chain effects. We used a case study located in semi-continental conditions (Mirecourt - North-Eastern France). The simulated farming system is a mixed dairy and crops system so as to account for a rather generic farming system.
机译:农业活动是一氧化二氮(N20),甲烷(CH4)和二氧化碳(CO_2)的重要来源。它们贡献了欧盟总排放温室气体(GhG)的10%。我们寻求在农场一级评估GhG排放并设计缓解措施。由于排放在农场运营的许多阶段发生,因此必须考虑营养循环和农场工作。我们的建议包括以下三个特征:一种综合的农场方法,该方法结合经验模型和机械模型,通过两种土地利用耦合模型描述碳和氮通量。和系统边界仅限于农场大门,但也包括链前和链后效应。我们使用了一个位于半大陆条件下的案例研究(Mirecourt-法国东北部)。模拟的耕作系统是乳制品和农作物的混合系统,因此可以解释相当通用的耕作系统。

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