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Impact of hydrogen onboard storage technologies on the performance of hydrogen fuelled vehicles: A techno-economic well-to-wheel assessment

机译:氢气车载存储技术对氢燃料汽车性能的影响:技术经济的车轮到车轮评估

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摘要

Hydrogen onboard storage technologies form an important factor in the overall performance of hydrogen fuelled transportation, both energetically and economically. Particularly, advanced storage options such as metal hydrides and carbon nanotubes are often hinted favourable to conventional, liquid and pressurized, storage options. This study assesses the technical and economic performance of four onboard storage technologies in a well-to-wheel assessment. It does so for centralized and onsite hydrogen production scenarios with gaseous pipeline and liquid truck distributed hydrogen. Energetically, centralized production and liquefaction outperforms onsite production and liquefaction by 20% on the average primary energy input, despite the need of pipeline or over the road distribution. The gaseous handling on the filling station performs better with an average driving energy use of 0.11 MJp/km compared to 0.15 MJp/km for liquid handling. The advanced onboard storage technologies perform better by 22% than the conventional storage technologies on primary energy input in the chain. The average driving cost for gaseous and liquid onboard storage are 53% above the gasoline reference cost of 21euroct/km and the advanced onboard storage technologies as much as 98%, almost double the reference cost. The car expenditure for a fuel cell driven car compared to an internal combustion engine driven car is for a large part responsible for this difference. Advanced onboard storage technologies thus perform better than conventional onboard storage technologies energetically albeit to higher cost.
机译:氢气车载存储技术在能源和经济方面是氢气运输总体性能的重要因素。特别地,通常暗示先进的存储选择,例如金属氢化物和碳纳米管,对于常规的液体和加压存储选择是有利的。这项研究通过全面评估评估了四种车载存储技术的技术和经济性能。它适用于使用气态管道和液体卡车分配氢气的集中式和现场制氢方案。从动力上讲,尽管需要管道或在道路上进行分配,但集中式生产和液化的平均一次能源输入性能却比现场生产和液化高出20%。加油站的气态处理性能更好,平均驱动能耗为0.11 MJp / km,而液体处理为0.15 MJp / km。先进的车载存储技术在链中一次能源输入方面的性能比传统存储技术好22%。气态和液态车载存储的平均驱动成本比21欧元/公里的汽油参考成本高出53%,而先进的车载存储技术则高达98%,几乎是参考成本的两倍。与内燃发动机驱动的汽车相比,燃料电池驱动的汽车的汽车支出在很大程度上造成了这种差异。因此,尽管成本更高,但先进的机载存储技术在性能上要比常规机载存储技术更好。

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    de Wit, M.P.; Faaij, A.P.C.;

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  • 年度 2007
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