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HERO ID
6693293
Reference Type
Journal Article
Title
Incorrect assumption of boron trifluoride hydrolyzation to hydrogen fluoride and the effect on existing monitoring techniques
Author(s)
Jones, WR
Year
1998
Volume
12
Issue
1
Page Numbers
19-23
Web of Science Id
CCC:000074316000004
Abstract
Recently, the reliability of leak detection techniques for boron trifluoride gas, BF(3), has been called into question. Typically, boron trifluoride is monitored indirectly as hydrogen fluoride, Hf, based on the assumption that BF(3) instantly hydrolyzes to form HF upon contact with humid air. An understanding of the chemical reaction of anhydrous BF(3) stored in gas cylinders and the environment into which it leaks is fundamental to any environmental health and safety program seeking to monitor it. This paper provides background to the assumption of hydrolization, the current question of sensor reliability, and a thorough examination of the chemical reaction. The discussion shows conclusively that HF is not formed as a result of BF(3) exposure to moist air. The paper then discusses how this information affects four current gas monitoring techniques: Fourier Transform Infrared (FTIR) spectrometer; Molecular Emission Spectrometer (MES) or flame ionization; Mineral Acids Chemcassette(R) (1) tapes; and electrochemical cells. It is demonstrated that only the latter method is incapable of adequately monitoring BF(3) due to its inherent reliance on the assumption of BF(3) hydrolyzation to HF.
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