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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Optical band gap analysis of soot and organic carbon in premixed ethylene flames: Comparison of in-situ and ex-situ absorption measurements
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Optical band gap analysis of soot and organic carbon in premixed ethylene flames: Comparison of in-situ and ex-situ absorption measurements

机译:预混合乙烯火焰中烟灰和有机碳的光学带隙分析:原位和前原位吸收测量的比较

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The similarity of in-situ and ex-situ absorption/extinction properties was found by comparing data sets obtained in premixed flat ethylene flames (C/O = 0.77); both ex-situ absorption measurements at CNR of Naples and in-situ laser extinction/absorption measurements at Lund University. The optical band gap analysis was performed as a method to separate/evaluate the contributions to the UV-Visible absorption from organic carbon and soot by selecting two spectral regions; above 685 nm where only soot is assumed to absorb radiation and below 685 nm, where both soot and organic carbons absorb. Optical band gap for soot was analyzed separately from organic carbon, obtaining their individual contribution to the spectral absorption from inception, throughout the growth region up to soot aggregation. While the optical band gap of soot strongly decreased along the flame from 1 to 0.1 eV, the band gap for organic carbons remained constant at similar to 1.7-1.8 eV. By using the relationship of the optical band gap with nanostructural parameters (layer length and aromatic rings number), the average molecular weight of organic carbon around 400 u resulted rather far away from the molecular weight of 1000-2000 mass units evaluated for incipient soot consistently with the view of PAH species sticking together for particle inception. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过比较预混合的扁平乙烯火焰中获得的数据集(C / O = 0.77)来发现原位和原位吸收/消光特性的相似性; N NALS的CNR和隆德大学原位激光消光/吸收测量的ex-situ吸收测量。通过选择两个光谱区域,进行光带间隙分析作为分离/评估从有机碳和烟灰的贡献的方法;在685nm以上,仅假定烟灰吸收辐射和低于685nm,其中烟灰和有机碳都吸收。从有机碳分开分别分别分别分析烟气的光带隙,从而从烟灰聚集的整个生长区域中获得它们对初始化的光谱吸收的各个贡献。虽然烟灰的光带间隙沿着1至0.1eV的火焰强烈降低,但是有机碳的带隙保持恒定与1.7-1.8eV类似。通过使用纳米结构参数(层长度和芳环数)的光带间隙的关系,有机碳的平均分子量约为400 u,导致远离1000-2000个质量单位的分子量始终如一地评估初期烟灰随着PAH物种的看法,粘在一起进行粒子初始化。 (c)2019年elestvier有限公司保留所有权利。

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