首页> 外文会议>Symposium on Life-Cycle Analysis Tools for 'Green' Materials and Process Selection >Hydrogen as fuel for urban transportation Environmental footprint of different hydrogen production routes and the influence on the total life cycle of FC powered transportation systems - an LCA case study within CUTE
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Hydrogen as fuel for urban transportation Environmental footprint of different hydrogen production routes and the influence on the total life cycle of FC powered transportation systems - an LCA case study within CUTE

机译:氢气作为城市交通环境足迹的燃料,不同的氢气生产路线的影响以及对FC动力运输系统的总生命周期的影响 - LCA案例在可爱中

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Fuel cells have the potential to offer an alternative propulsion system to convential internal combustion engines used in transportation at the present time. As a result fuel cells may provide consumers a cleaner and more efficient technology. Fuel cells are powered with hydrogen fuel which can be produced from various energy sources, which include renewable sources of energy or conventional fossil fuel. Thus, the emerging hydrogen infrastructure needs to be addressed carefully. A consortium of industries, research institutes and several European cities launched the EU-project CUTE (Clean Urban Transport in Europe), whose aim is not only to develop and demonstrate 30 fuel cell busses and the accompanying infrastructure in 10 European cities, but also assess the environmental impacts. Within the project scope the potential of fuel cell powered transport systems for reducing environmental influences such as greenhouse effect, improving the quality of the atmosphere and conserving fossil resources is assessed. This first large scale test run of fuel cell transportation systems is the best possible information base to give real life numbers about environmental impacts of a fuel cell system including hydrogen used as fuel. Meanwhile the use of hydrogen fuel is mostly considered as environmentally friendly. However, a statement about the actual environmental impacts is only possible by regarding the entire Life Cycle of the hydrogen, which includes its production and use. Within CUTE different routes of the hydrogen production have been assessed: hydrogen production via electrolysis and steam reforming, considering different boundary conditions, e.g. country specific energy production/ supply, different ways for electricity production (e.g. wind power, geothermal energy etc.) etc. This presentation will show the environmental footprint of these routes (Life Cycle Assessment results), which enable the comparison of the environmental impacts of the different hydrogen production routes and the transportation system considering the total life cycle (production of FC bus, operation and end of life) along with diesel and natural gas as "conventional" fuels for bus operation.
机译:燃料电池有可能提供替代推进系统,以便在当前运输中使用的交流内燃机。结果,燃料电池可以为消费者提供清洁和更有效的技术。燃料电池供电,氢燃料可以由各种能源制造,包括可再生能源或常规化石燃料。因此,需要仔细解决新出现的氢基础设施。行业,研究机构和几个欧洲城市的联盟推出了欧盟 - 项目可爱(欧洲清洁城市交通工具),其目的不仅可以在10个欧洲城市开发和展示30个燃料电池总线和随附的基础设施,也是评估环境影响。在项目范围内,评估了降低环境影响,降低温室效应,提高大气质量和节约化石资源的潜在燃料电池供电系统的潜力。这一燃料电池运输系统的第一个大规模试验是最佳的信息基础,以提供关于燃料电池系统的环境影响的现实寿命,包括用作燃料的氢气。同时,使用氢气的使用主要被认为是环保的。然而,只有关于氢的整个生命周期,才能达到实际环境影响的陈述,其包括其生产和使用。在可爱的不同途径中,已经评估了氢气生产:通过电解和蒸汽重整,考虑到不同的边界条件,例如,氢气产生。国家特定的能源生产/供应,电力生产方式(例如风电,地热能等)等。该演示将显示这些路线(生命周期评估结果)的环境足迹,这使得对环境影响的环境影响考虑到总生命周期(FC总线,寿命的生产)以及柴油和天然气的不同氢气生产路线和运输系统作为总线运行的“常规”燃料。

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