Fluorescence spectroscopy of aromatic species produced in rich premixed ethylene flames

被引:48
作者
Ciajolo, A
Ragucci, R
Apicella, B
Barbella, R
de Joannon, M
Tregrossi, A
机构
[1] CNR, Ist Ric Combust, I-80125 Naples, Italy
[2] Univ Naples Federico II, Dipartimento Ingn Chim, I-80125 Naples, Italy
关键词
fluorescence; PAH;
D O I
10.1016/S0045-6535(00)00258-7
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The fluorescence spectra of the condensed species (CS) collected in the soot inception region of a rich premixed laminar ethylene/oxygen flame have been measured by excitation in the UV at 266 and 355 nm excitation wavelength. The contribution of the most abundant polycyclic aromatic hydrocarbons (PAH) to the CS fluorescence has been evaluated in order to attribute the CS fluorescence at different emission wavelengths to specific aromatic structures. The fluorescence peaks detected in the UV region of the CS fluorescence spectrum was found to be mainly due to a typical PAH like fluorene, that is, the most fluorescent one among the PAH analyzed in the CS by chromatographic analysis. The CS exhibited the larger emission in the visible where the PAH contribution has been shown to be negligible and other fluorescing aromatic species, not identified by chromatographic analysis of the CS, have to be considered responsible for the visible fluorescence. Laser induced fluorescence (LIF) flame measurements excited at 266 nm and detected at two selected wavelengths (310 and 410 nm) have been performed along the flame axis and compared with the CS fluorescence intensity. The LIF and CS fluorescence signals show quite similar axial trends demonstrating that the LIF signals are related to CS fluorescence. In particular, the LIF fluorescence signals detected in the UV could be attributed to the PAH fluorescence whereas the unidentified species contained in the CS can be followed by LIF detection in the visible region. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:835 / 841
页数:7
相关论文
共 18 条
[1]   OPTICAL AND CHEMICAL CHARACTERIZATION OF CARBON POLYMORPHS FORMED DURING SPRAY COMBUSTION OF HYDROCARBONS [J].
BARBELLA, R ;
BERETTA, F ;
CIAJOLO, A ;
DALESSIO, A ;
PRATI, MV ;
TREGROSSI, A .
COMBUSTION SCIENCE AND TECHNOLOGY, 1990, 74 (1-6) :159-173
[2]  
BARBELLA R, 1982, POLYNUCLEAR AROMATIC, P83
[3]   ULTRAVIOLET AND VISIBLE FLUORESCENCE IN THE FUEL PYROLYSIS REGIONS OF GASEOUS-DIFFUSION FLAMES [J].
BERETTA, F ;
CINCOTTI, V ;
DALESSIO, A ;
MENNA, P .
COMBUSTION AND FLAME, 1985, 61 (03) :211-218
[4]  
Berlman I.B., 1971, Handbook of Fluorescence Spectra of Aromatic Molecules
[5]  
Ciajolo A, 1998, TWENTY-SEVENTH SYMPOSIUM (INTERNATIONAL) ON COMBUSTION, VOLS 1 AND 2, P1481
[6]   FLUORESCENCE EXCITATION AND EMISSION-SPECTRA OF POLYCYCLIC AROMATIC-HYDROCARBONS AT FLAME TEMPERATURES [J].
COE, DS ;
STEINFELD, JI .
CHEMICAL PHYSICS LETTERS, 1980, 76 (03) :485-489
[7]   IDENTIFICATION OF A SOURCE OF ARGON-ION-LASER EXCITED FLUORESCENCE IN SOOTING FLAMES [J].
COE, DS ;
HAYNES, BS ;
STEINFELD, JI .
COMBUSTION AND FLAME, 1981, 43 (02) :211-214
[8]  
DALESSIO A, 1992, 24 S INT COMB COMB I, P973
[9]   OPTICAL STUDIES OF SOOT-FORMATION PROCESSES IN PREMIXED FLAMES [J].
HAYNES, BS ;
JANDER, H ;
WAGNER, HG .
BERICHTE DER BUNSEN-GESELLSCHAFT-PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1980, 84 (06) :585-592
[10]   ANALYSIS OF A COAL-DERIVED LIQUID USING HIGH-PRESSURE LIQUID-CHROMATOGRAPHY AND SYNCHRONOUS FLUORESCENCE SPECTROMETRY [J].
KATOH, T ;
YOKOYAMA, S ;
SANADA, Y .
FUEL, 1980, 59 (12) :845-850