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首页> 外文期刊>Journal of Applied Research and Technology >Photo-induced ignition phenomenon of carbon nanotubes by Xenon pulsed light: Ignition tests analysis, automotive and new potential applications, future developments
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Photo-induced ignition phenomenon of carbon nanotubes by Xenon pulsed light: Ignition tests analysis, automotive and new potential applications, future developments

机译:氙气脉冲光对碳纳米管的光致点火现象:点火测试分析,汽车及新的潜在应用,未来发展

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Abstract The possibility to use carbon nanotubes (CNTs) enriched with a certain amount of metal nanoparticles for photo-inducing the combustion of liquid fuel sprays, gaseous and solid fuels was investigated in different research works. CNTs photo-ignition phenomenon has been used to trigger the combustion of different fuel typologies, demonstrating better features compared with those obtained by employing a traditional spark-plug. These improvements are due to the presence of distributed ignition nuclei inside the combustion chamber, so obtaining better values of the peak pressure, ignition delay and combustion duration. In this work, the CNTs photo-ignition phenomenon has been analyzed in order to find the minimum energy values needed to trigger the ignition, by varying the light pulse parameters and the nanoparticles concentration, Multi Wall CNTs (MWCNTs) - ferrocene, by weight. Afterwards, the results of combustion processes, triggered by using the nanoparticles, are shown comparing them with those obtained by means the spark plug and with results already published related to other fuel typologies. Hence, an overview of the possible applications of this photo-ignition phenomenon, beside that of the automotive field, is presented, also considering the disadvantages of the Xe-lamp based triggering system. Therefore, after a critical discussion on the light source typology until now used (Xenon lamp), by reporting the possible contraindications deriving from the use of this light source in most of the applicative fields, a solution is here proposed. It involves the substitution of the Xe lamp with LED sources, showing also the related experimental setup. This solution is also strengthened by the our experimental observations of CNTs photo-ignition by using high-power white LEDs as light source, never reported up to now in the literature, and by better characteristics of adaptability, robustness, easy driving and benefits provided by the LEDs rather than the Xenon lamp.
机译:摘要在不同的研究工作中,研究了使用富含一定量金属纳米颗粒的碳纳米管(CNTs)来光诱导液体燃料喷雾,气体和固体燃料燃烧的可能性。碳纳米管的光着火现象已被用来触发不同类型燃料的燃烧,与采用传统火花塞所获得的特征相比,具有更好的特征。这些改进是由于燃烧室内存在着分布的点火核,因此可以获得更好的峰值压力,点火延迟和燃烧持续时间的值。在这项工作中,已经分析了CNTs的光着火现象,以便通过改变光脉冲参数和纳米颗粒的浓度(多壁CNTs(MWCNTs)-二茂铁)的重量来找到触发点火所需的最小能量值。然后,显示了通过使用纳米颗粒触发的燃烧过程的结果,并将其与通过火花塞获得的结果进行了比较,并与已经发表的与其他燃料类型有关的结果进行了比较。因此,除了汽车领域之外,还概述了这种光着火现象的可能应用,并考虑了基于氙气灯的触发系统的缺点。因此,在对直到现在使用的光源类型(氙气灯)进行严格讨论之后,通过报告在大多数应用领域中使用这种光源可能产生的禁忌症,在此提出了一种解决方案。它涉及用LED光源代替Xe灯,还显示了相关的实验设置。我们通过使用大功率白光LED作为光源对碳纳米管进行光点火的实验观察,并通过更好的适应性,鲁棒性,易驾驶性和优点提供了更好的特性,从而增强了该解决方案。 LED,而不是氙气灯。

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