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PROVIDING AND PROCESSING FUEL

机译:提供和加工燃料

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摘要

Hydrogen, the preferred fuel for fuel cells, can be obtained from many sources. Fossil fuels such as oil, natural gases and coal, as well as bio-fuels can all be chemically converted to hydrogen. The basic chemistry of the various steps in the conversion is well known. However, each type of fuel cell has different fuelling requirements and therefore the design of fuel processors depends not only on the availability and form of fuel but also the application. For stationary power plants natural gas is an ideal fuel. It is best converted to hydrogen as close to the fuel cell as possible. In the case of the MCFC and SOFC this ensures high efficiency by using heat that would otherwise be lost from the stack. Recent advances in micro-channel catalytic reactor design may also lead to higher efficiencies and more compact stationary and portable systems. For transportation applications, hydrogen appears to be the preferred fuel in the long term. In the near term, methanol is a good fuel to use in vehicles, since it can be converted relatively easily on-board to hydrogen. Hydrogen can be generated by electrolysing water, and in combination with a fuel cell, this offers a means of storing energy from intermittent renewable power sources. In the future, hydrogen may be generated by direct solar electro-photolysis, or by biological methods. As such technologies advance, the transportation and storage of hydrogen stands out as perhaps the major barrier to the realisation of commercial fuel cell systems.
机译:氢气,燃料电池的优选燃料可以从许多来源获得。化石燃料如石油,天然气和煤,以及生物燃料都可以将化学转化为氢气。转换中的各个步骤的基本化学是众所周知的。然而,每种类型的燃料电池具有不同的燃料需求,因此燃料处理器的设计不仅取决于燃料的可用性和形式,而且取决于应用。对于固定发电厂,天然气是理想的燃料。最好转换为尽可能靠近燃料电池的氢气。在MCFC和SOFC的情况下,通过使用否则从堆栈丢失的热量来确保高效率。微通道催化反应器设计的最近进步也可能导致更高的效率和更紧凑的固定式和便携式系统。对于运输应用,氢似乎是长期优选的燃料。在接近术语中,甲醇是在车辆中使用的良好燃料,因为它可以相对容易地在板上转换为氢气。通过电解水可以产生氢气,并且与燃料电池组合产生,这提供了一种从间歇可再生电源存储能量的手段。在未来,氢气可以通过直接太阳电光或通过生物方法产生。由于这种技术推进,氢气的运输和储存可能是实现商业燃料电池系统的主要障碍。

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