Quantitative Detection of Gas-Phase NaOH Using 355-nm Multiple-Photon Absorption and Photofragment Fluorescence
- 1 July 1997
- journal article
- research article
- Published by SAGE Publications in Applied Spectroscopy
- Vol. 51 (7) , 990-993
- https://doi.org/10.1366/0003702971941368
Abstract
The third-harmonic output of a Nd:YAG laser is utilized in the quantitative detection of gas-phase NaOH. Species selectivity and sensitivity are achieved via multiple-photon absorption and photo-dissociation of NaOH—in combination with monitoring of the subsequent Na photofragment fluorescence. Detection limits of ∼0.5 ppm of gas-phase NaOH have been achieved under atmospheric conditions. The fluorescence intensity has been found to be proportional to the square of the laser power, which is consistent with a second-order absorption process. Although the technique is less sensitive than the more widely used excimer laser-induced photofragment fluorescence approach, there are many technical advantages which make it more suitable for use in modern coal combustion systems. These combustion systems require accurate alkali measurement and control to combat fouling and corrosion of process surfaces and turbine blades.Keywords
This publication has 8 references indexed in Scilit:
- Metal Emissions Monitoring Using Excimer Laser Fragmentation-Fluorescence SpectroscopyCombustion Science and Technology, 1996
- Multiwavelength Monitoring of Photofragment Fluorescence after 193 nm Photolysis of NaCl and NaOH: Application to Measuring the Sodium Species Released from Coal at High TemperaturesAnalytical Chemistry, 1995
- Monte Carlo simulation of radiation trapping and quenching of photofragment fluorescence after 193 nm photolysis of NaClJournal of the Chemical Society, Faraday Transactions, 1995
- Measurement and Modeling of Vapor-Phase Sodium Chloride Formed During Pulverized Coal CombustionCombustion Science and Technology, 1992
- On-line, real-time alkali monitor for process stream analysisReview of Scientific Instruments, 1987
- Photofragment fluorescence as an analytical technique: application to gas-phase alkali chloridesAnalytical Chemistry, 1986
- Argon fluoride (ArF) excimer laser photolysis of ammonia. Formation of imidogen and imidogen-d in the A3.PI. stateThe Journal of Physical Chemistry, 1984
- Ultraviolet Absorption Cross Sections for the Alkali Halide VaporsThe Journal of Chemical Physics, 1967