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Enhancing hydrogen production for fuel cell vehicles by superposition of acoustic fields on the reformer: a preliminary study

机译:通过在重整器上叠加声场来提高燃料电池汽车的制氢能力:初步研究

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Because of recent interest in energy efficiency and environmental issues, fuel cell vehicles are seen by many to be the way of the future. As near term fuel cell vehicles will likely use the existing liquid fuel infrastructure, the efficient reformation of hydrocarbon fuels is one technological hurdle that must addressed. An investigation has been made into the possibility of enhancing reformation processes through superposition of an acoustic field on the catalyst bed of a methanol steam reformer. As part of this study, background is given outlining the difficulties and liabilities of steam-reformation for transportation applications. Proven acoustic enhancement of various processes is reviewed and theory of acoustic enhancement of the steam-reforming process is developed. The facility studied includes a steam-reforming reactor that has been modified to accept an acoustic field. Relevant parameters of the acoustic field are quantified and discussed. The effect of the acoustic field has been investigated with relation to the reactor output parameters. Although the facility used has not been optimized for utilizing acoustic waves, significant acoustic enhancement of the steam-reformation process is demonstrated by the study and such enhancement has shown a positive effect on the reformation process. Potential benefits insulting from acoustic enhancement of steam reforming as shown by this study are: an increased reactor capacity for a given size and mass, smoothing of the temperature profile and better control of the temperatures in the catalyst bed. It is expected that for different fuels and/or reforming methods, similar results would be obtained for comparable process constraints.
机译:由于近期对能源效率和环境问题的兴趣,许多人认为燃料电池汽车是未来的方式。由于近期款式燃料电池车可能会使用现有的液体燃料基础设施,烃燃料的有效改造是必须解决的一种技术障碍。通过叠加在甲醇蒸汽重整器的催化剂床上叠加声学来提高改革过程的可能性。作为本研究的一部分,背景是概述了运输应用蒸汽改造的困难和责任。经过验证的探讨了各种过程的声学增强,并开发了蒸汽重整过程的声学增强理论。研究的设施包括一种蒸汽重整反应器,其被修改为接受声场。量化和讨论声场的相关参数。已经研究了声场的效果与反应器输出参数有关。尽管所使用的设施未被优化用于利用声波,但是通过研究证明了蒸汽重整过程的显着声学增强,并且这种增强显示了对改革过程的积极影响。如本研究所示的蒸汽重整声侮辱的潜在益处是:对给定尺寸和质量,温度曲线的平滑和更好地控制催化剂床中的温度的更好的反应器​​容量增加。预期对于不同的燃料和/或重整方法,将获得类似的结果对类似的过程约束。

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