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The role of electricity in decarbonizing European road transport - Development and assessment of an integrated multi-sectoral model

机译:电力在欧洲道路运输低碳化中的作用-综合多部门模型的开发和评估

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摘要

Despite regulation efforts, CO2 emissions from European road transport have continued to rise. Increased use of electricity offers a promising decarbonization option, both to fuel electric vehicles and run power-to-x systems producing synthetic fuels. To understand the economic implications of increased coupling of the road transport and electricity sectors, an integrated multi-sectoral partial-equilibrium investment and dispatch model is developed for the European electricity and road transport sectors, linked by an energy transformation module to endogenously account for, e.g., increasing electricity consumption and flexibility provision from electric vehicles and power-to-x systems. The model is applied to analyze the effects of sector-specific CO2 reduction targets on the vehicle, electricity and power-to-x technology mix as well as trade flows of power-to-x fuels in European countries from 2020 to 2050. The results show that, by 2050, the fuel shares of electricity and power-to-x fuels in the European road transport sector reach 37% and 27%, respectively, creating an additional electricity demand of 1200 TWh in Europe. To assess the added value of the integrated modeling approach, an additional analysis is performed in which all endogenous ties between sectors are removed. The results show that by decoupling the two sectors, the total system costs may be significantly overestimated and the production costs of power-to-x fuels may be inaccurately approximated, which may affect the merit order of decarbonization options.
机译:尽管有法规方面的努力,欧洲道路运输产生的二氧化碳排放量仍在继续上升。电力使用的增加为电动汽车提供燃料并运行生产合成燃料的Power-to-x系统提供了有前途的脱碳选择。为了解道路运输和电力部门耦合度提高带来的经济影响,我们为欧洲电力和道路运输部门开发了一个综合的多部门局部均衡投资和调度模型,并通过能源转换模块将其内生地纳入考虑范围,例如,增加电动汽车和Power-to-x系统的电力消耗和灵活性。该模型用于分析特定领域的二氧化碳减排目标对2020年至2050年欧洲国家的车辆,电力和电力到技术的混合以及电力到燃料的贸易流量的影响。结果研究表明,到2050年,欧洲道路运输行业的电力燃料和电力转换燃料的燃料份额分别达到37%和27%,从而在欧洲增加了1200 TWh的电力需求。为了评估集成建模方法的附加值,将执行附加分析,其中删除了部门之间的所有内生联系。结果表明,通过将这两个部门分离,总的系统成本可能会被大大高估,而动力二氧化碳燃料的生产成本可能会不准确地估算,这可能会影响脱碳方案的优劣顺序。

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