Quantitative oxygen concentration imaging in toluene atmospheres using Dual Imaging with Modeling Evaluation

Quantitative oxygen concentration imaging in toluene atmospheres using Dual Imaging with Modeling... Fluorescence lifetimes of toluene as a function of oxygen concentration in toluene/nitrogen/oxygen mixtures have been measured at room temperature using picosecond-laser excitation of the S1–S0 transition at 266 nm. The data satisfy the Stern–Volmer relation with high accuracy, providing an updated value of the Stern–Volmer slope. A newly developed fluorescence lifetime imaging scheme, called Dual Imaging with Modeling Evaluation (DIME), is evaluated and successfully demonstrated for quantitative oxygen concentration imaging in toluene-seeded O2/N2 gas mixtures. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Experiments in Fluids Springer Journals

Quantitative oxygen concentration imaging in toluene atmospheres using Dual Imaging with Modeling Evaluation

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Publisher
Springer-Verlag
Copyright
Copyright © 2012 by Springer-Verlag Berlin Heidelberg
Subject
Engineering; Engineering Fluid Dynamics; Fluid- and Aerodynamics; Engineering Thermodynamics, Heat and Mass Transfer
ISSN
0723-4864
eISSN
1432-1114
D.O.I.
10.1007/s00348-012-1433-y
Publisher site
See Article on Publisher Site

Abstract

Fluorescence lifetimes of toluene as a function of oxygen concentration in toluene/nitrogen/oxygen mixtures have been measured at room temperature using picosecond-laser excitation of the S1–S0 transition at 266 nm. The data satisfy the Stern–Volmer relation with high accuracy, providing an updated value of the Stern–Volmer slope. A newly developed fluorescence lifetime imaging scheme, called Dual Imaging with Modeling Evaluation (DIME), is evaluated and successfully demonstrated for quantitative oxygen concentration imaging in toluene-seeded O2/N2 gas mixtures.

Journal

Experiments in FluidsSpringer Journals

Published: Dec 22, 2012

References

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