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Identification of atomic lines and molecular bands of benzene and carbon disulfide liquids by using LIBS

机译:用LIBS鉴定苯和二硫化碳液体的原子线和分子带

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Plasma emission of liquid benzene (C6H6) and carbon disulfide (CS2) have been studied by using the laser-induced breakdown spectroscopy (LIBS) technique in air. Atomic lines of carbon, hydrogen, sulfur, nitrogen, and oxygen and molecular emissions of CN and C-2 have been identified. The formation mechanism of C-2 and CN molecules has been discussed. The combustion process and high mole fraction of hydrogen in benzene caused a decreasing atomic line intensity of oxygen and an increasing atomic line intensity of hydrogen with respect to the CS2 and air. Additionally, more intense CN molecular bands and weak nitrogen atomic lines in the C6H6 spectrum compared to CS2 have been observed. Furthermore, molecular emissions of C-2 have not been observed in the CS2 spectrum. The electron temperature and vibrational temperature have been calculated from the atomic lines and molecular band intensity, respectively. Finally, the validity of the local thermodynamic equilibrium (LTE) assumption in this experiment has been shown. (C) 2015 Optical Society of America
机译:利用激光诱导击穿光谱技术(LIBS)在空气中研究了液态苯(C6H6)和二硫化碳(CS2)的等离子体发射。已经确定了碳,氢,硫,氮和氧的原子线以及CN和C-2的分子发射。讨论了C-2和CN分子的形成机理。相对于CS2和空气,燃烧过程和苯中氢的高摩尔分数导致氧的原子线强度降低,氢的原子线强度升高。此外,与CS2相比,在C6H6光谱中观察到了更强的CN分子带和较弱的氮原子线。此外,在CS2光谱中未观察到C-2的分子发射。电子温度和振动温度分别由原子线和分子带强度计算得出。最后,证明了该实验中局部热力学平衡(LTE)假设的有效性。 (C)2015年美国眼镜学会

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