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Long-term production technology mix of alternative fuels for road transport: A focus on Spain

机译:公路运输的替代燃料的长期生产技术组合:专注于西班牙

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Road transport is one of the main sources of greenhouse gas emissions due to the current dependence on fossil fuels such as diesel and gasoline. This situation needs to be changed through the retirement of fossil fuels and the implementation of alternative fuels and vehicles such as biofuels, battery electric vehicles, and fuel cell electric vehicles fuelled by hydrogen. Nevertheless, the environmental suitability of alternative fuels is conditioned by how they are produced. Through the case study of Spain, this article prospectively assesses - from a techno-economic and carbon footprint perspective- the production technology mix of alternative fuels from 2020 to 2050. The proposed energy systems optimisation model includes a large number of production technologies regarding biofuels (bioethanol, biodiesel, synthetic diesel/gasoline, and hydrotreated vegetable oil), electricity, and hydrogen. The combined study of these fuels provides a relevant framework to discuss the targets established for the road transport sector with a high level of detail not only regarding fuel type but also technology breakdown. The results show the relevance of second-generation biofuel production technologies in fulfilling the future biofuel demand. Regarding the extra electricity demand associated with the penetration of electric vehicles, the results suggest a key role of wind- and solar-based technologies in meeting such a need. Concerning hydrogen as an option to decarbonise the transport system, even though steam methane reforming is the most mature and cost-competitive production technology, hydrogen production would be satisfied through electrolysis in order to avoid relying on fossil resources as the main feedstock. Overall, this integrated approach to the long-term production technology mix of alternative fuels for road transport is expected to be relevant to a wide range of decision-makers willing to prospectively assess road transport systems from a technology perspective.
机译:道路运输是由于目前对柴油和汽油等化石燃料的依赖性导致的温室气体排放的主要来源之一。这种情况需要通过化石燃料的退休以及使用氢气推动的生物燃料,电池电动车和燃料电池电动车等替代燃料和车辆的实施来改变这种情况。然而,替代燃料的环境适用性是由生产的方式调节。通过西班牙的案例研究,本文潜在评估 - 从技术经济和碳足迹视角 - 从2020年到2050年的替代燃料的生产技术组合。所提出的能源系统优化模型包括大量有关生物燃料的生产技术(生物乙醇,生物柴油,合成柴油/汽油和加氢处理植物油),电力和氢气。这些燃料的综合研究提供了有关框架,讨论为道路运输部门建立的目标,不仅具有高水平的细节,不仅仅是关于燃料类型,而且还有技术崩溃。结果表明,二代生物燃料生产技术在实现未来生物燃料需求方面的相关性。关于与电动汽车渗透相关的额外电力需求,结果表明了风和太阳能技术在满足这种需求方面的关键作用。关于氢作为脱碳的选项,即使蒸汽甲烷重整是最成熟和成本竞争力的生产技术,也会通过电解满足氢气生产,以避免依靠化石资源作为主要原料。总体而言,这一综合方法对于公路运输的替代燃料的长期生产技术组合将与广泛的决策者相关,愿意从技术角度展示公路运输系统。

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