Toxic Fume Comparison of a Few Explosives Used in Trench Blasting

International Society of Explosives Engineers
Marcia Harris Michael Sapko Richard Mainiero
Organization:
International Society of Explosives Engineers
Pages:
18
File Size:
535 KB
Publication Date:
Jan 1, 2003

Abstract

Since 1988, there have been 17 documented incidents in the United States and Canada in which carbon monoxide (CO) is suspected to have migrated through ground strata into occupied enclosed spaces as a result of proximate trench blasting or surface mine blasting. These incidents resulted in 39 suspected or medically verified carbon monoxide poisonings and one fatality. To better understand the factors contributing to this hazard, the National Institute for Occupational Safety and Health (NIOSH) carried out studies in a 12-foot diameter sphere to identify key factors that may enhance the levels of CO associated with the detonation of several commercial trenching explosives. The gaseous detonation products from emulsions, a watergel, and ANFO blasting agents as well as gelatin dynamite, TNT, and Pentolite boosters were measured in an argon atmosphere and compared with those for the same explosives detonated in air. Test variables included explosive formulation, wrapper, aluminum addition, oxygen balance, and density. Major contributing factors to CO production, under these laboratory test conditions, are presented. The main finding is the high CO production associated with the lack of afterburning in an oxygen poor atmosphere. Fumes measurements are compared with the manufacturer’s reported IME fume class and with the Federal Relative Toxicity Standard 30 CFR Part 15 in order to gain an understanding of the relative toxicity of some explosives used in trench blasting.
Citation

APA: Marcia Harris Michael Sapko Richard Mainiero  (2003)  Toxic Fume Comparison of a Few Explosives Used in Trench Blasting

MLA: Marcia Harris Michael Sapko Richard Mainiero Toxic Fume Comparison of a Few Explosives Used in Trench Blasting. International Society of Explosives Engineers, 2003.

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