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实现无碳、无排放和无油移动的材料:氢燃料电池汽车——现在和未来。

Materials towards carbon-free, emission-free and oil-free mobility: hydrogen fuel-cell vehicles--now and in the future.

机构信息

Toyota Motor Corporation, Fuel Cell Development Group, , 1 Toyota, Toyota, Aichi, Japan.

出版信息

Philos Trans A Math Phys Eng Sci. 2010 Jul 28;368(1923):3365-77. doi: 10.1098/rsta.2010.0115.

Abstract

In the past, material innovation has changed society through new material-induced technologies, adding a new value to society. In the present world, engineers and scientists are expected to invent new materials to solve the global problem of climate change. For the transport sector, the challenge for material engineers is to change the oil-based world into a sustainable world. After witnessing the recent high oil price and its adverse impact on the global economy, it is time to accelerate our efforts towards this change. Industries are tackling global energy issues such as oil and CO2, as well as local environmental problems, such as NO(x) and particulate matter. Hydrogen is the most promising candidate to provide carbon-free, emission-free and oil-free mobility. As such, engineers are working very hard to bring this technology into the real society. This paper describes recent progress of vehicle technologies, as well as hydrogen-storage technologies to extend the cruise range and ensure the easiness of refuelling and requesting material scientists to collaborate with industry to fight against global warming.

摘要

在过去,材料创新通过新材料引发的技术改变了社会,为社会增加了新的价值。在当今世界,工程师和科学家们被期望发明新材料来解决气候变化这一全球性问题。对于交通部门来说,材料工程师的挑战是将以石油为基础的世界转变为可持续发展的世界。在目睹了最近的高油价及其对全球经济的不利影响之后,现在是加快这一转变的时候了。各行业正在解决全球能源问题,如石油和二氧化碳,以及当地的环境问题,如氮氧化物和颗粒物。氢气是提供无碳、无排放、无油的流动性最有前途的候选者。因此,工程师们正在努力将这项技术推向现实社会。本文描述了车辆技术以及储氢技术的最新进展,以延长续航里程,并确保加氢的便利性,同时呼吁材料科学家与工业界合作,共同对抗全球变暖。

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