1998
DOI: 10.1366/0003702981943473
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Spatially Resolved Temperature Determination of an Air/Acetylene Flame Using the Two-Step Laser-Enhanced Ionization Technique

Abstract: We have demonstrated a two-step laser-enhanced ionization (LEI) technique to be potentially useful in measuring a spatially resolved temperature in an atmospheric air/acetylene flame. As a complement to the existing optical methods, LEI detection shares the advantages of extremely high sensitivity and the capability of achieving a high spatial resolution, confined to the dual-beam intersection area of 1 mm × 1 mm. A theoretical model was developed to precisely extract the temperature information from the obtai… Show more

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Cited by 10 publications
(7 citation statements)
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“…The fuel C 2 H 2 and air were regulated at flow rates of 0.5 and 12.5 L/min, respectively, and were premixed prior to reaching the burner head. The corresponding flame temperature was measured as ∼2500 K. 32,33 Laser Radiation. Two tunable dye lasers (Spectra-Physics PDL-2A and PDL3), each pumped by individual Nd:YAG lasers (Spectra-Physics, DCR-2A and GCR3) in a second harmonic generator, were used as radiation sources.…”
Section: Methodsmentioning
confidence: 99%
“…The fuel C 2 H 2 and air were regulated at flow rates of 0.5 and 12.5 L/min, respectively, and were premixed prior to reaching the burner head. The corresponding flame temperature was measured as ∼2500 K. 32,33 Laser Radiation. Two tunable dye lasers (Spectra-Physics PDL-2A and PDL3), each pumped by individual Nd:YAG lasers (Spectra-Physics, DCR-2A and GCR3) in a second harmonic generator, were used as radiation sources.…”
Section: Methodsmentioning
confidence: 99%
“…The difficulty to accurately determine gas phase temperatures in hard-to-reach places inside equipments is an important obstacle to a better understanding of physical-chemical processes occurring during atomic spectrometric determinations. Despite some effort 16,22 to present a simple, fast, effective alternative to the traditional Sn two-line method, 21 some work is required to develop a portable thermometer capable of reliable spatial-and time-resolved measurements. Using a handheld spectrometer, a fiber optic and a laptop computer, a novel temperature probe based on atomic emission spectrometry and the Boltzmann distribution equation is presented.…”
Section: Introductionmentioning
confidence: 99%
“…where n a is the free atom num ber den sity of an el e ment present in the flame, and nt is the to tal num ber den sity of the same el e ment ac tu ally nebulized. The lat ter can be ex plic itly expressed as 25 (2) where C is the con cen tra tion of the analyte so lu tion; the uptake (nebulization) rate (mL/min); the sam ple in tro duc tion ef fi ciency; f the flow rate (mL/s) of un burnt gases at room tem per a ture (298 K) and at mo spheric pres sure; n 298 the number of moles of spe cies at room tem per a ture; and nT the number of moles of com bus tion prod ucts at tem per a ture T. The value of n T /n 298 was pre vi ously de ter mined to be 1.0 for our case with an acet y lene/air ra tio of 1:25 and a flame tem per ature of 2500 K. 28,29 There fore, sub sti tut ing the ex per i men tal con di tions and the mea sured val ues into eq. 2 may give rise to the es ti mate of nt for dif fer ent al kali salts.…”
Section: De Ter MI Na Tion Of the At Om Iza Tion Ef Fi Ciencymentioning
confidence: 70%
“…The fuel C 2 H 2 and air with flow rates of 0.5 L/min and 13 L/min, re spec tively, were pre mixed prior to reach ing the burner head. The cor re spond ing flame tem per a ture was de ter mined to be about 2500 K. 28,29 The up take rate into the burner head was held at 4.5 mL/min for all the aque ous so lutions of the ha lide com pounds.…”
Section: Flame Sys Temmentioning
confidence: 99%