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Experimental Study of Explosive Intervals of Ternary Gas Mixtures

机译:三元混合气体爆炸间隔的实验研究。

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The use of hydrogen as an energy vector seems today one of the most viable alternatives, although its use involves safety problems due to the generation of explosive atmospheres. Lower and upper flammability limits are one of the most important parameters at the time of characterize and handle flammable gases. This paper is focused on the evaluation of the safety prevention measures more commonly applied to explosive atmospheres, specifically the inertization, by means of a non-flammable gas (CO2) in air-hydrogen mixtures. In this study both theoretical and experimental methods to determine the flammability interval have been carried out. The flammability limits and the LOC value are represented in a ternary diagram enable to determine the explosive area containing the entire range of explosive mixtures. The experimental study has been conducted in a flameproof chamber of 0.5 dm3 volume, designed to withstand explosions inside. The results show that the theoretical approaches are only valid as a previous step to the experimental tests, since the observed differences between both implies that the use of such approaches could lead to important safety risks.
机译:尽管由于爆炸性气氛的产生,氢的使用存在安全问题,但如今将氢用作能量载体似乎是最可行的替代方法之一。在表征和处理可燃气体时,可燃性上限和下限是最重要的参数之一。本文的重点是通过空气-氢气混合物中的不易燃气体(CO2)评估更普遍用于爆炸性环境的安全预防措施,特别是惰性化。在这项研究中,已经进行了确定可燃间隔的理论和实验方法。可燃极限和LOC值用三元图表示,可以确定包含整个爆炸混合物范围的爆炸区域。实验研究是在容积为0.5 dm3的隔爆室内进行的,该隔爆室内设计用于承受内部爆炸。结果表明,理论方法仅在实验测试的前一步才有效,因为两者之间观察到的差异意味着使用这种方法可能会导致重大的安全风险。

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