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Autoignition mechanism of dimethyl ether-air mixtures in the presence of atomic iron

机译:原子铁存在下二甲醚 - 空气混合物的自燃机制

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The search for reactive additives capable of reducing the combustibility of dimethyl ether is an important problem due to the widening use of ether as an alternative environmentally friendly motor fuel. This paper presents a numerical study of the autoignition chemistry of mixtures of dimethyl ether with air in the presence of atomic iron. Atomic iron, which is an effective inhibitor of premixed laminar hydrocarbon flames, was found to shorten the induction period. However, the additive affects only the first stage of the induction period. The mechanism of promotion of the low-temperature oxidation of dimethyl ether-air mixtures by atomic iron is the formation of hydroxyls in reactions involving iron compounds. Since the additive hardly changes the duration of the second stage of the induction period, it can be suggested that OH radicals play an insignificant role in the low-temperature oxidation of dimethyl ether at this stage.
机译:寻找能够降低二甲醚的可燃性的反应性添加剂是由于乙醚的使用作为替代的环保机动燃料而导致的重要问题。 本文介绍了在原子钢存在下空气的二甲醚混合物的自燃化学的数值研究。 发现原子钢是预混层烃火焰的有效抑制剂,缩短了诱导期。 然而,添加剂仅影响诱导期的第一阶段。 通过原子铁促进促进低温氧化的二甲醚 - 空气混合物的机理是羟基的形成涉及铁化合物的反应。 由于添加剂几乎没有改变诱导时期的第二阶段的持续时间,因此可以提出OH激进在该阶段在二甲醚的低温氧化中起着微不足道的作用。

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