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Hydrogen

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Like any other fuel, hydrogen is flammable and potentially dangerous. Fundamental to the creation of a hydrogen economy is a viable, safe, and affordable hydrogen-energy-system. At atmospheric pressure, it is combustible at concentrations from 4% to 74.2% by volume. It has the highest flame velocity of any gas, and its ignition energy is very low, which is 32% less than methane gas. In this paper, the problem of 'safe hydrogen' is tackled using a new theoretical approach. Hydrogen is mixed with predetermined amounts of methane gas and to be sold as 'Hydrothane'. The properties of this mixture are the flame speed, LEL (lower explosion limit), and UEL (upper explosion limit), are to be developed as a function of the ratio of the hydrogen-methane. The maximum flame speed, cm/s, for a selected number of hydrocarbons along with the corresponding volume percentage of combustible mixture (fuel in air) are used in the proposed analysis. In addition, Le Chatelier's law is used to predict limits of flammability of the Hydrothane. (2 figures, 3 tables, 3 references)
机译:像任何其他燃料一样,氢是易燃的并且有潜在危险。建立氢经济的基础是可行,安全和负担得起的氢能源系统。在大气压下,其可燃浓度为4%至74.2%(体积)。它具有所有气体中最高的火焰速度,并且其点火能量非常低,比甲烷气体低32%。在本文中,使用一种新的理论方法来解决“安全氢”问题。将氢气与预定量的甲烷气体混合,然后以“氢烷”的形式出售。该混合物的特性是火焰速度,LEL(爆炸下限)和UEL(爆炸上限),取决于氢-甲烷的比例。在建议的分析中使用了选定数量的碳氢化合物的最大火焰速度cm / s以及相应的可燃混合物(空气中的燃料)的体积百分比。此外,Le Chatelier定律用于预测氢化乙烷的可燃性极限。 (2图3表3参考)

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