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Integrating agriculture and energy to assess GHG emissions reduction: a methodological approach

机译:整合农业和能源以评估温室气体减排量:一种方法学方法

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Agriculture is responsible for approximately 25% of anthropogenic global GHG emissions. This significant share highlights the fundamental importance of the agricultural sector in the global GHG emissions reduction challenge. This article develops and tests a methodology for the integration of agricultural and energy systems modelling. The goal of the research is to extend an energy systems modelling approach to agriculture in order to provide richer insights into the dynamics and interactions between the two (e.g. in competition for land-use). We build Agri-TIMES, an agricultural systems module using the TIMES energy systems modelling framework, to model the effect of livestock emissions and explore emissions reduction options. The research focuses on Ireland, which is an interesting test case for two reasons: first, agriculture currently accounts for about 30% of Ireland's GHG emissions, significantly higher than other industrialized countries yet comparable with global levels (here including emissions associated with other land-use change and forestation); second, Ireland is both a complete and reasonably sized agricultural system to act as a test case for this new approach. This article describes the methodology used, the data requirements, and technical assumptions made to facilitate the modelling. It also presents results to illustrate the approach and provide associated initial insights.
机译:农业约占全球人为温室气体排放量的25%。这一重要份额突出了农业部门在全球温室气体减排挑战中的根本重要性。本文开发并测试了农业和能源系统建模集成的方法。该研究的目的是将能源系统建模方法扩展到农业,以便为两者之间的动态关系和相互作用提供更丰富的见解(例如,在争夺土地使用方面)。我们使用TIMES能源系统建模框架构建农业系统模块Agri-TIMES,以对牲畜排放的影响进行建模并探索减排方案。研究重点是爱尔兰,这是一个有趣的测试案例,其原因有两个:首先,农业目前占爱尔兰温室气体排放量的30%,明显高于其他工业化国家,但与全球水平相当(此处包括与其他土地相关的排放量,使用变更和造林);其次,爱尔兰是一个完整且规模合理的农业体系,可以作为这种新方法的测试案例。本文介绍了用来简化建模的方法,数据要求和技术假设。它还提供结果以说明该方法并提供相关的初步见解。

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