Mining Publication: Evaluation of a Wearable Monitor for Measuring Real-time Diesel Particulate Matter Concentrations in Several Underground Mines
Original creation date: December 2014
The standard method for determining diesel particulate matter (DPM) exposures in underground metal/nonmetal mines provides the average exposure concentration for an entire working shift, and it can take weeks to obtain results. This approach is problematic because, although it reports that an overexposure has occurred, it fails to provide critical information about cause or prevention. Conversely, real-time measurement would provide miners with timely information to identify the major factors contributing to overexposures and would allow engineering controls to be deployed immediately. Due to these potential benefits, the National Institute for Occupational Safety and Health (NIOSH) developed a wearable instrument that measures real-time elemental carbon (EC) concentrations (EC is a DPM surrogate) via laser extinction. This instrument was later constructed into a commercial version (Airtec). This article evaluates the Airtec's performance in several underground metal/nonmetal mines by comparing it to the standard method for determining DPM exposures (NIOSH method 5040). The instrument was found to meet the NIOSH accuracy criteria and to show no statistical difference from NIOSH method 5040 results. In addition, the instrument's measurements were found to be unaffected by dust and humidity.
Authors: JD Noll, S Janisko
Peer Reviewed Journal Article - December 2014
NIOSHTIC2 Number: 20043406
J Occup Environ Hyg 2013 Dec; 10(12):716-722
See Also
- Diesel Exhaust Aerosol, Review of Measurement Technology
- Differential Pressure as a Measure of Particulate Matter Emissions from Diesel Engines
- Exposure Monitoring of Dust and Toxic Substances
- Instrumentation for Diesel Particulate Matter Emissions Research
- Real-time Diesel Particulate Monitor for Underground Mines
- Real-Time DPM Ambient Monitoring in Underground Mines
- Size Distribution and Deposition in Human Respiratory Tract: Particle Mass and Number
- Strategies to Reduce Miners Exposure to DPM and Gases (Elko)
- Strategies to Reduce Miners Exposure to DPM and Gases (Reno)
- Technology News 431 - Apparatus for Sampling and Measuring Diesel Tailpipe Emissions
- Underground Mine Diesel Particulate Monitor Network
- Content source: National Institute for Occupational Safety and Health, Mining Program