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Hydrogen from hydrocarbon fuels for fuel cells

机译:来自碳氢燃料的氢,用于燃料电池

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Hydrogen for use in fuel cells is typically generated in a fuel processor from available fuels (C_n G_m O_p) by means of the reforming reaction. In this article, we describe the reforming process, discuss the three principal pathways (steam reforming, partial oxidation, and autothermal reforming), and demonstrate that the process is most efficient when conducted under conditions of thermoneutrality (△H_r = 0). The reforming efficiency is correlated with the fuel properties to show that it depends on the values of n and m, and on the heat of formation of the fuel. Steam reforming is known to produce high concentrations of hydrogen in the product. The partial oxidation and autothermal reforming processes are more attractive for practical applications; contrary to widely held beliefs, they are also capable of higher reforming efficiencies than are steam reformers.
机译:用于燃料电池的氢气通常在燃料处理器中通过重整反应由可用燃料(C_n G_m O_p)产生。在本文中,我们描述了重整过程,讨论了三个主要途径(蒸汽重整,部分氧化和自热重整),并证明了在热中性(△H_r = 0)条件下进行过程最有效。重整效率与燃料性质相关,表明重整效率取决于n和m的值以及燃料形成的热量。已知蒸汽重整在产物中产生高浓度的氢。部分氧化和自热重整工艺对实际应用更具吸引力。与普遍认为相反的是,它们也比蒸汽重整器具有更高的重整效率。

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