Institut P', UPR 3346 CNRS, ENSMA, Université de Poitiers, F-86961 Chasseneuil, France; INSA-CVL, PRISME, Univ. Orléans, EA 4229, F-18020 Bourges, France.
INSA-CVL, PRISME, Univ. Orléans, EA 4229, F-18020 Bourges, France.
J Hazard Mater. 2015;283:507-11. doi: 10.1016/j.jhazmat.2014.09.057. Epub 2014 Oct 8.
Minimum ignition energies (MIE) of α-pinene-benzene/air mixtures at a given temperature for different equivalence ratios and fuel proportions are experimented in this paper. We used a cylindrical chamber of combustion using a nanosecond pulse at 1,064 nm from a Q-switched Nd:YAG laser. Laser-induced spark ignitions were studied for two molar proportions of α-pinene/benzene mixtures, respectively 20-80% and 50-50%. The effect of the equivalence ratio (Φ) has been investigated for 0.7, 0.9, 1.1 and 1.5 and ignition of fuel/air mixtures has been experimented for two different incident laser energies: 25 and 33 mJ. This study aims at observing the influence of different α-pinene/benzene proportions on the flammability of the mixture to have further knowledge of the potential of biogenic volatile organic compounds (BVOCs) and smoke mixtures to influence forest fires, especially in the case of the accelerating forest fire phenomenon (AFF). Results of ignition probability and energy absorption are based on 400 laser shots for each studied fuel proportions. MIE results as functions of equivalence ratio compared to data of pure α-pinene and pure benzene demonstrate that the presence of benzene in α-pinene-air mixture tends to increase ignition probability and reduce MIE without depending strongly on the α-pinene/benzene proportion.
本文实验测定了不同当量比和燃料比例下,在给定温度下α-蒎烯-苯/空气混合物的最小点火能(MIE)。我们使用圆柱形燃烧室,采用纳秒脉冲,波长为 1064nm,来自调 Q Nd:YAG 激光器。研究了两种摩尔比例的α-蒎烯/苯混合物的激光诱导火花点火,分别为 20-80%和 50-50%。研究了当量比(Φ)的影响,范围为 0.7、0.9、1.1 和 1.5,并对两种不同的入射激光能量(25 和 33mJ)下的燃料/空气混合物的点火进行了实验。本研究旨在观察不同α-蒎烯/苯比例对混合物可燃性的影响,进一步了解生物源挥发性有机化合物(BVOCs)和烟雾混合物对森林火灾的潜在影响,特别是在加速森林火灾现象(AFF)的情况下。点火概率和能量吸收的结果基于每种研究燃料比例的 400 次激光射击。作为当量比函数的 MIE 结果与纯α-蒎烯和纯苯的数据相比表明,苯在α-蒎烯-空气混合物中的存在倾向于增加点火概率并降低 MIE,而不强烈依赖于α-蒎烯/苯的比例。