使用热等离子体的 C2 碳氢化合物热解产物

Yoshiya Matsukawa , Aki Watanabe , Yasuhiro Saito , Yohsuke Matsushita , Koki Era , Takayuki Aoki , Hideyuki Aoki
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引用次数: 0

摘要

薄膜状碳预计会有多种应用,因此建立一种大规模生产薄膜状碳的方法是非常必要的。虽然已有利用热等离子体获得薄膜状固体碳的报道,但对这种薄膜状碳的生长行为还缺乏足够的了解。我们通过热等离子体热解 C2 碳氢化合物的实验分析了产物及其生长行为,并通过数值分析研究了热等离子体热解 C2 碳氢化合物的行为。从反应器的取样口取样,用电子显微镜观察不同停留时间的固体产物,并用拉曼光谱和 X 射线衍射分析结晶度。通过热解气相色谱-质谱仪(GC/MS)测量了反应器出口处过滤器收集的固体产物。乙炔热解产生的颗粒状碳与电炉中的热解相同,而乙烯热解产生的是膜状碳。然而,乙烯热解产物的 HRTEM 图像显示出几十纳米的叠层石墨结构线,表明其结构不同。在乙烯热解产物的热解气相色谱/质谱(GC/MS)中,检测到了各种化合物,而在乙炔热解产物中,没有检测到三环到七环的多环芳烃(PAHs)。利用电子碰撞反应进行了反应动力学计算,以研究重要的反应。乙烯热解产生的离子量往往比乙炔热解产生的离子量大,这表明在本计算中乙烯更有可能发生电子碰撞反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyrolysis products of C2 hydrocarbons using thermal plasma

Film-like carbon is expected to have various applications, and establishing a method for its mass production is highly desirable. Although there have been reports of obtaining film-like solid carbon using thermal plasma, knowledge about the growth behavior of this film-like carbon has not been sufficient. We analyzed the products and their growth behavior by pyrolysis experiments of C2 hydrocarbons with thermal plasma and investigated the pyrolysis behavior of C2 hydrocarbons with thermal plasma by numerical analysis. Solid products with different residence times were sampled from a sampling port in the reactor, observed by electron microscopy, and analyzed for crystallinity by Raman spectroscopy and X-ray diffraction. The solid products collected by a filter at the reactor outlet were measured by pyrolysis gas chromatography-mass spectrometer (GC/MS). The pyrolysis of acetylene yielded particulate carbon as in the pyrolysis in the electric furnace, whereas the pyrolysis of ethylene yielded a film-like carbon. The HRTEM image of ethylene pyrolysis products, however, shows lines indicating a stacked graphite structure of several tens of nanometers, indicating a different structure. In the pyrolysis GC/MS of ethylene pyrolysis products, various compounds were detected, whereas in the pyrolysis of acetylene, polycyclic aromatic hydrocarbons (PAHs) from three to seven rings were not detected. Reaction kinetic calculations using electron collision reactions were performed to examine the important reactions. The amount of ions produced tends to be larger for the pyrolysis of ethylene than for the pyrolysis of acetylene, indicating that the electron collision reaction is more likely to occur with ethylene in this calculation.

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