Absorption Cross Section Simulation: a Preliminary Study of Ultraviolet Absorption Spectroscopy for Ozone Gas Measurement
Author(s) -
Tay Ching En Marcus,
Michael David,
Maslina Yaacob,
Mohd Rashidi Salim,
Mohd Haniff Ibrahim,
Nor Hafizah Ngajikin,
Asrul Izam Azmi
Publication year - 2013
Publication title -
jurnal teknologi
Language(s) - English
Resource type - Journals
eISSN - 2180-3722
pISSN - 0127-9696
DOI - 10.11113/jt.v64.2085
Subject(s) - absorption cross section , ozone , absorption (acoustics) , absorption spectroscopy , ultraviolet , tunable diode laser absorption spectroscopy , spectroscopy , chemistry , ultraviolet visible spectroscopy , torr , wavelength , analytical chemistry (journal) , materials science , cross section (physics) , optics , optoelectronics , physics , organic chemistry , thermodynamics , quantum mechanics , distributed feedback laser
Preliminary study to measure gaseous ozone concentration using ultraviolet absorption spectroscopy is presented. Firstly, background of ozone is introduced. Next, fundamental theory behind ultraviolet absorption spectroscopy is discussed based on Beer-Lambert’s Law and absorption spectrum of ozone. After that, absorption cross section of ozone is simulated via spectralcalc.com. Temperature of system is varied. Peak absorption cross section and peak absorption wavelength are found to be 1.166 10 -21 m 2 molecule -1 and 255.376 nm respectively at 300 K and 0 torr. Absorption cross section in ultraviolet region shows slight variation of at most 1.286 per cent when temperature is changed from 200 K to 300 K. Around room temperature, peak absorption cross section simulated in current work is consistent with previous work, because relative error is found to be small in between 1.630 per cent and 3.087 per cent. Unlike previous work, absorption of light by ozone is detected in ultraviolet region only due to weak absorption in visible region.
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