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首页> 外文期刊>Reviews on Advanced Materials Science >Light-Induced ignition of Carbon Nanotubes and energetic nano-materials: a review on methods and advanced technical solutions for nanoparticles-enriched fuels combustion
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Light-Induced ignition of Carbon Nanotubes and energetic nano-materials: a review on methods and advanced technical solutions for nanoparticles-enriched fuels combustion

机译:碳纳米管和精力充沛的纳米材料的光诱导点火:纳米粒子燃料燃烧方法和先进技术解决方案综述

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Aim of the present manuscript is to provide an overview of all possible methods and light source typologies used by the different research groups for obtaining the energetic nano-materials’ photo-ignition, showing the latest progress related to such phenomenon employing, also, alternative radiation sources to the common Xe lamp. In fact, the employment of a different source typology can open new usage prospects respect to those enabled by the Xe lamp, mainly due to its technological limitations. Therefore, several studies are faced to test light sources, such as lasers and LEDs, for igniting the nano-energetic materials (as CNTs mixed with metallic catalyzers, Al / CuO nano-particles, etc); these nano-materials are usefully employed for starting, in volumetric and controlled way, the combustion of air-fuel mixtures inside internal combustion engines, leading to significant benefits to the combustion process also in terms of efficiency, reliability, and emissions of pollutants. Several research works are presented in literature concerning the ignition of liquid / gaseous fuels, without nano-particles, employing laser sources (i.e laser-based plugs in place of the common spark plugs); therefore, an innovative solution is proposed that employs multi-point laser-plugs for inducing the ignition of nano-materials dispersed into the air-fuel mixture inside the cylinder, so further improving the combustion of the fuel in an internal combustion engine.
机译:目前稿件的目的是提供不同研究组使用的所有可能的方法和光源类型,用于获得能量纳米材料的照片点火,显示与采用这种现象的最新进展,也是替代辐射普通XE灯的来源。事实上,不同来源类型的就业可以打开新的使用前景尊重XE灯,主要是由于其技术限制。因此,若干研究面临着测试光源,例如激光和LED,用于点燃纳米能量材料(如金属催化剂混合的CNT,Al / CuO纳米颗粒等);这些纳米材料是有效的,以以容积和控制的方式开始,内燃机内的空气燃料混合物的燃烧,导致燃烧过程的显着益处,也在富污染物的效率,可靠性和排放方面。一些研究作品在文献中介绍了液体/气体燃料点火的文献中,没有纳米粒子,采用激光源(即,基于激光的插头代替公共火花塞);因此,提出了一种创新的解决方案,该解决方案采用多点激光插头,用于诱导分散在气缸内的空气 - 燃料混合物中的纳米材料的点火,因此进一步改善了内燃机中燃料的燃烧。

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