论文标题

整个能源系统的能源投资回报:对比利时的申请

The energy return on investment of whole energy systems: application to Belgium

论文作者

Dumas, Jonathan, Dubois, Antoine, Thiran, Paolo, Jacques, Pierre, Contino, Francesco, Cornélusse, Bertrand, Limpens, Gauthier

论文摘要

通过促进可再生能源的高渗透并维持获得丰富且负担得起的主要能源资源的访问是一个非平凡的多目标问题,计划能源系统的解化。但是,到目前为止,减少社会碳足迹的大多数长期政策都认为该系统的成本是能源系统模型中的主要指标。本文是第一个通过将能源投资回报率(EROI)添加到整个能源系统优化模型中来开发新方法的方法。我们使用所有考虑的EROI技术和资源构建了数据库。此外,从基于化石基于化石的碳中性能源系统搬离,这增加了低碳技术和资源数据的不确定性问题。因此,我们进行了全局灵敏度分析,以确定推动系统EROI变化的主要参数。这种新颖的方法可以应用于任何能源系统,我们使用现实世界中的案例研究来说明该模型:2035年比利时能源系统,用于几个温室气体排放目标。 主要结果是三倍:(i)当温室气体排放减少5时,系统的EROI从8.9降低至3.9; (ii)可再生燃料(主要是进口可再生气)代表系统主要能源混合物中最大的份额; (iii)在敏感性分析中,可再生燃料驱动了低温温室气体排放情况系统EROI变化的67%。 EROI的减少引发了有关在没有不利社会经济影响的情况下满足气候目标的问题。大多数国家都非常依赖化石燃料,在转移到碳中立性时,它们可能会遇到EROI的下降。因此,这项研究证明了在能源系统模型中考虑其他标准(例如EROI)的重要性。

Planning the defossilization of energy systems by facilitating high penetration of renewables and maintaining access to abundant and affordable primary energy resources is a nontrivial multi-objective problem. However, so far, most long-term policies to decrease the carbon footprint of our societies consider the cost of the system as the leading indicator in the energy system models. This paper is the first to develop a novel approach by adding the energy return on investment (EROI) to a whole energy system optimization model. We built the database with all EROI technologies and resources considered. In addition, moving away from fossil-based to carbon-neutral energy systems raises the issue of the uncertainty of low-carbon technologies and resource data. Thus, we conducted a global sensitivity analysis to identify the main parameters driving the variations in the EROI of the system. This novel approach can be applied to any energy system, and we use a real-world case study to illustrate the model: the 2035 Belgian energy system for several greenhouse gas emissions targets. The main results are threefold: (i) the EROI of the system decreases from 8.9 to 3.9 when greenhouse gas emissions are reduced by 5; (ii) the renewable fuels - mainly imported renewable gas - represent the largest share of the system primary energy mix; (iii) in the sensitivity analysis, the renewable fuels drive 67% of the variation of the EROI of the system for low greenhouse gas emissions scenarios. The decrease in the EROI raises questions about meeting the climate targets without adverse socio-economic impact. Most countries rely massively on fossil fuels, and they could encounter an EROI decline when shifting to carbon neutrality. Thus, this study demonstrates the importance of considering other criteria, such as EROI, in energy system models.

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