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A novel energy systems model to explore the role of land use and reforestation in achieving carbon mitigation targets: A Brazil case study

机译:一种新型能源系统模型,探讨土地利用和重新造林在实现碳缓解目标方面的作用:巴西案例研究

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Due to its low global share of direct energy consumption and greenhouse gas emissions (1-2%), the implications of technological transitions in the agricultural and forestry sector on the energy system have been overlooked. This paper introduces the Agriculture and Land Use Sector module part of the ModUlar energy System Environment (MUSE), a novel energy system simulation model. The study presents a generalisable method that enables energy modellers to characterise agricultural technologies within an energy system modelling framework. Different mechanisation processes were characterised to simulate intensification/extensification transitions in the sector and its wider implications in the energy and land use system aiming at providing reliable non-energy outputs similarly to those found in dedicated land use models. Additionally, a forest growth model has been integrated to explore the role of reforestation alongside decarbonisation measures in the energy system in achieving carbon mitigation pathways. To illustrate the model's capabilities, Brazil is used as case study. Outputs suggest that by 2030 under a 2 degrees C mitigation scenario, most of Brazil agricultural production would move from 'transitional' to 'modern' practices, improving productivity and reducing deforestation rates, at the expense of higher energy and fertiliser demand. By mid-century Brazil has the potential to liberate around 24.4 Mha of agricultural land, where large-scale reforestation could have the capacity to sequester around 5.6 GtCO(2), alleviating mitigation efforts in the energy system, especially reducing carbon capture and storage technology investments in the industry and power sector. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于其直接能耗和温室气体排放量低(1-2%),忽视了技术转型对农业和林业部门的影响。本文介绍了模块化能系统环境(Muse)的农业和土地利用扇区模块部分,一种新型能源系统仿真模型。该研究提出了一种可稳定的方法,使能量策划能够在能量系统建模框架内表征农业技术。不同的机械化过程的特征是模拟该部门的强化/扩展过渡及其在能源和土地利用系统中的更广泛的影响,该系统旨在提供可靠的非能源输出,与专用土地使用模型中的那些相似。此外,已经整合了森林生长模型,以探讨重新造林在实现碳缓解途径中的脱碳措施中的重新造林的作用。为了说明模型的能力,巴西被用作案例研究。产出表明,到2030年在2摄氏度的缓解方案下,巴西农业生产的大部分都将从“过渡”到“现代”实践,提高生产力和降低森林砍伐率,以较高的能量和肥料需求。到世纪中,巴西有可能释放大约24.4米的农业用地,其中大规模的重新造林可能会有5.6个GTCO(2)左右的能力,减轻了能源系统的缓解力,特别是减少碳捕集和储存技术投资行业和电力部门。 (c)2019 Elsevier Ltd.保留所有权利。

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