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Electrons to Go: Electrochemistry and the Future of the Automobile

机译:电子:电化学和未来的汽车

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Electrification of the automobile provides pathways to sustaining freedom of personal mobility in the face of environmental imperatives, increasing demand for cars in the developing world, and limitations in the supply of easily-recoverable petroleum. This paper weighs the pros and cons of hydrogen fuel cell electric vehicles (FCEVs) vs. lithium-based battery electric vehicles (BEVs) as sustainable long-term solutions. BEVs can make efficient use of renewably-sourced electricity but face persistent shortfalls in range, speed of recharge, infrastructure for rapid recharge, and operability over climatic extremes. FCEVs can provide the full function expected of automobiles and light trucks today. They can meet range requirements, can be rapidly refueled, and can operate well at cold temperatures. However, they make relatively inefficient use of renewably-sourced electricity and require the implementation of a hydrogen infrastructure. Both systems still face cost challenges. Research directions and prospects for these two technologies are outlined.
机译:电气化的汽车制造商提供的途径维持个人的自由移动的环境规则,增加对汽车的需求发展中国家,供应和局限性轻易获得的石油。重氢燃料电池的优点和缺点电动汽车(FCEVs)与锂离子电池电动汽车(成为)作为可持续发展长期的解决方案。的可再生电力,但脸持续短缺,速度充电,快速充电基础设施,在极端气候的可操作性。提供完整的功能的汽车今天和轻型卡车。需求,可以迅速加油,可以在低温运行。相对低效利用可再生电力和要求实现一个氢基础设施。系统仍面临成本挑战。这两个方向和前景技术概述。

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