Logo image
Determination of volatile organic compounds in workplace air by multisorbent adsorption/thermal desorption-GC/MS
Journal article   Peer reviewed

Determination of volatile organic compounds in workplace air by multisorbent adsorption/thermal desorption-GC/MS

Chien-Hou Wu, Chien-Tai Feng, Yu-Shiu Lo, Tsai-Yin Lin and Jiunn-Guang Lo
Chemosphere, Vol.56(1), pp.71-80
07/2004

Abstract

Air analysis Environmental analysis Gas chromatography Multisorbent adsorption Volatile organic compounds
Investigation of volatile organic compounds (VOCs) was first conducted in the air of class-100 cleanrooms at liquid crystal display (LCD) fabrication facilities. Air samples were collected on multisorbent tubes (including Carbopack B, Carbopack C, and Carbosieve S-III) and analyzed using adsorption/thermal desorption coupled with gas chromatography-mass spectrometry (GC-MS). Optimal conditions lead to average recoveries in the range of 96.2-98.2%, and method detection limits between 0.38 and 0.78 ppb, under the condition of 1-l sampling volume and 80% relative humidity. The method appears to be accurate, sensitive, simple and well-suited for determining VOC distributions from various stages of LCD manufacturing process and temporal variations of the analyte concentrations. About 15 VOCs were identified in workplace air. The major pollutants such as propylene glycol methyl ether acetate (PGMEA), butyl acetate, and acetone that are commonly used in the opto-electronics industry were detected and accurately quantified with the established method. © 2004 Elsevier Ltd. All rights reserved.

Metrics

1 Record Views

Details

Logo image