柴油轻型卡车氢改造技术与环境评价

Napoli Giuseppe, Tumminia Giovanni, Andaloro Laura, Micari Salvatore, Casella Salvatore, Menichetti Dino, Antonucci Vincenzo, Ferraro Marco
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引用次数: 0

摘要

通过“绿色协议”路线图,欧洲打算到2050年实现气候中和。这是一个雄心勃勃的目标,只有通过重新定义能源系统才能实现,能源系统占欧洲大陆气候变化总排放量的75%。交通运输部门是一个关键组成部分,占欧盟温室气体排放总量的近三分之一。在与实现排放目标相关的政治激励措施的推动下,汽车行业正缓慢地从使用内燃机转向使用电动汽车。在这种情况下,氢可以发挥决定性作用。燃料电池汽车是零排放的,加油时间与传统燃料相当,比电池供电的电动汽车行驶里程更长。公路运输中最显著的竞争优势首先与车队、货运和城市公共汽车在当地公共交通方面的应用有关,其中与电池供电车辆的充电时间和自主性相关的限制更为明显。考虑到仅更换推进系统的巨大潜力,以及氢在零排放轻型商用车应用中的优势,无论是在环境方面还是作为过渡的有利因素,本工作研究了从内燃机到电动马达的货运应用的改造。通过对一个案例的分析,给出了一个技术解决方案,并随后基于LCA方法进行了比较分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technical and Environmental assessment of diesel lightweight truck retrofitting by hydrogen
Through the Green Deal roadmap, Europe intends to achieve climate neutrality by 2050. It is an ambitious goal that can only be achieved through the redefinition of the energy system, which contributes with a share equal to 75% of total emissions climate-changing of the European continent. The transport sector is a key component, being responsible for almost a third of total greenhouse gas emissions in the EU. Driven by political incentives linked to the achievement of emissions targets, the automotive industry is slowly converting from the use of internal combustion engines to electric vehicles. In this context, hydrogen can play a decisive role. Fuel cell vehicles are zero-emission, have refueling times comparable to those of traditional fuels and have a longer range than battery-powered electric vehicles. The most significant competitive advantages in road transport are related to applications on fleets, freight transport and urban buses for local public transport in the first place, where the limits related to recharging times and autonomy of battery-powered vehicles are more evident. This work investigates the retrofitting from internal combustion engine to electric motor for freight transport applications considering the great potential deriving from the replacement of the propulsion system only and the advantages of hydrogen in zero-emission light commercial vehicle applications, both in environmental terms and as an enabling element for the transition. Through the analysis of a case study, a technical solution is represented and subsequently a comparative analysis based on the LCA approach.
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