Occupational health and safety in mining has clearly improved in developed countries over the past twenty years, but accidents and illness still occur with unacceptable frequency. The arrival of new mining equipment, bigger, more powerful and complex and requiring a higher skill level appears also to increase certain specific risks of accident and work-related illness. The objective of this paper is to examine the impact of new equipment on occupational health and safety in underground mining. The injury rate associated with eight equipment introduction projects was examined. The results show clearly that the introduction of new equipment with technological innovations does not automatically reduce the injury rate. The new equipment may even generate a higher injury rate than the equipment it replaced. Ergonomic deficiencies were noted in some of the new equipment. We suggest that future research focus on identifying the mechanisms and conditions that determine injury rate following the acquisition of innovative as means of improving occupational health and safety in mining. Successful implementation of new mining equipment appears to depend on the specific conditions of use.
KeywordsInnovationMining EquipmentOccupational Health and SafetyMines
Kecojevic, V., Komljenovic, D., Groves, W. and Rodomsky, M. (2007) An Analysis of Equipment-Related Fatal Accidents in U.S. Mining Operations: 1995-2005. Safety Science, 45, 864-874. http://dx.doi.org/10.1016/j.ssci.2006.08.024
APSM (Association Paritaire pour la Santé et la Sécurité du Travail du SecteurMinier) (2013) Evolution of the Hours Worked (in Millions), the Frequency and the Severity on August 31st, 2013—évolution des Heures Travaillées (en Millions), de la Fréquence et de la Gravité au 31 aout 2013. http://aspmines.qc.ca/info-statistiques/
MMSD (Mining, Minerals and Sustainable Development) (2002) The Story of North American Mining/Mineral. http://www.iisd.org/pdf/2002/mmsd_sus_profile.pdf
Horberry, T., Burgess-Limerick, R. and Steiner, L. (2011) Human Factors for the Design, Operation, and Maintenance of Mining Equipment. CRC Press, New York.
CEMI (Centre for Excellence in Mining Innovation) (2013) Mine Automation—A Vision of Our Future. Ultra Deep Mining Workshop, Sudbury, 12-13 June 2013.
Kumar, S. (2004) Vibration in Operating Heavy Haul Trucks in Overburden Mining. Applied Ergonomics, 35, 509-520. http://dx.doi.org/10.1016/j.apergo.2004.06.009
Eger, T., Salmoni A. and Whissel, R. (2004) Factors Influencing Load-Haul-Dump Operator Line of Sight in Underground Mining. Applied Ergonomics, 35, 93-103. http://dx.doi.org/10.1016/j.apergo.2003.12.002
Eger, T., Salmoni, A., Cann, A. and Jack, R. (2006) Whole-Body Vibration Exposure Experienced by Mining Equipment Operators. Occupational Ergonomics, 6, 121-127.
Coleman, P.J. and Kerkering, J.C. (2007) Measuring Mining Safety with Injury Statistics: Lost Workdays as Indicators of Risk. Journal of Safety Research, 38, 523-533.http://dx.doi.org/10.1016/j.jsr.2007.06.005
Ouellet, S., Ledoux, é., Cloutier E. and Fournier, P.S. (2011) Conditions of Integration of the New Workers in the Mining Sector: An Exploratory Study—Conditions d’Intégration des Nouveaux Travailleursdans le SecteurMinier : une étude Exploratoire (Version Corrigée). R-650, Institut de Recherche Robert-Sauvé en Santé et en Sécurité du Travail, Montréal.
Ural, S. and Demirkol, S. (2008) Evaluation of Occupational Safety and Health in Surfaces Mines. Safety Science, 46, 1016-1024. http://dx.doi.org/10.1016/j.ssci.2007.11.010
Ruff, T., Coleman, P. and Martini, L. (2011) Machine-Related Injuries in the US Mining Industry and Priorities for Safety Research. International Journal of Injury Control and Safety Promotion, 18, 11-20. http://dx.doi.org/10.1080/17457300.2010.487154
Introduction of Innovative Equipment in Mining: Impact on Occupational Health and Safety — Oak Academic Publishing
Dhillon, B.S. (2010) Mine Safety: A Modern Approach. Springer, London.
Karmis, M. (2001) Mine Health and Safety Management. Society for Mining, Metallurgy, and Exploration, Inc., Littleton.
Dessureault, P.C. and Doucet, M. (2003) Evaluation of the Thermal Constraint Indicators in Deep Mining—évaluation des Indices de Contrainte Thermique en Mines Profondes.R-350, Institut de Recherche Robert-Sauvé en Santé et en Sécurité du Travail, Montréal.
MSHA (Mine Safety and Health Administration) (2013) Mine Injury and Worktime, Quartely. Yearly Reports, January-June 2013 (Preliminary). http://www.msha.gov/Stats/Part50/WQ/MasterFiles/MIWQ Master_20132.pdf
Groves, W.A., Kecojevic, V.J. and Komljenovic, D. (2007) Analysis of Fatalities and Injuries Involving Mining Equipment. Journal of Safety Research, 38, 461-470.http://dx.doi.org/10.1016/j.jsr.2007.03.011
Eger, T., Stevenson, J., Boileau, P.-é. and Salmoni, A. (2008) Predictions of Health Risks Associated with the Operation of Load-Haul-Dump Mining Vehicles: Part 1-Analysis of Whole-Body Vibration Exposure Using ISO 2631-1 and ISO-2631-5 Standards. International Journal of IndustrialErgonomics, 38, 726-738. http://dx.doi.org/10.1016/j.ergon.2007.08.012
Eger, T., Stevenson, J., Boileau, P.-é. and Salmoni, A. (2008) Predictions of Health Risks Associated with the Operation of Load-Haul-Dump Mining Vehicles: Part 2-Evaluation of Operator Driving Postures and Associated Postural Loading. International Journal of Industrial Ergonomics, 38, 801-815. http://dx.doi.org/10.1016/j.ergon.2007.09.003
Gustafson, A. (2011) Automation of Load Haul Dump Machines. Research Report, Lulea University of Technology.
Lynas, D. and Horberry, T. (2011) Human Factor Issues with Automated Mining Equipment. The Ergonomics Open Journal, 4, 74-80. http://dx.doi.org/10.2174/1875934301104010074
Roque, N., Nadeau, S. and Badri, A. (2014) Preliminary Ergonomics of a Bolting Machine and a Drill Used in Underground Mining. Accepted in November 2013. Gesellschaft für Arbeitswissenschaft, Munich, 12-14 March 2014.
Statistics Canada (2002) The Innovation and the Use of High Technologies in the Sector of the Mining Extraction in Canada: Extraction of Metallic Ores—L’Innovationet l'Utilisation de Technologies de Pointe dans le Secteur de l'ExtractionMinière au Canada: Extraction de Minerais Métalliques, No 88F0006XIF2002013, Government of Canada.
Hood, M. (2004) Advances in Hard Rock Mining Technology. Proceedings of the Mineral Economics and Management Society, 13th Annual Conference, 21-23 April 2004.
Upstill, G. and Hall, P. (2006) Innovation in the Minerals Industry: Australia in a Global Context. Resources Policy, 31, 137-145. http://dx.doi.org/10.1016/j.resourpol.2006.12.002
Yudelman, D. (2006) New Mining Technology. The Northern Miner.
Bartos, P. (2007) Is Mining a High-Tech Industry? Investigations into Innovation and Productivity Advance. Resources Policy, 32, 149-158. http://dx.doi.org/10.1016/j.resourpol.2007.07.001
Lasonde, P. (2006) Exploration the Life Blood of the Mining Industry. Presentation to Society of Economic Geologists Conference, Wealth Creation in the Mineral Industry, Integrating Science, Business, and Education, 14 May 2006, CD-ROM.
Statistics Canada (2013) Business Enterprise Current Intramural Research and Development Expenditures as a Percentage of Performing Research and Development Company Revenues. http://www5.statcan.gc.ca/cansim/a26?lang=eng&retrLang=eng&id=3580211&paSer=&pattern= &stByVal=1&p1=1&p2=38&tabMode=dataTable&csid
Osisko. (2011) The Quebec Mining Industry: An Industry of the Knowledge, Creator of Wealth for the Community-L’Industrie Minière Québécoise: UneIndustrie du Savoir, Créatrice de Richessepour la Collectivité. http://www.minalliance.ca/pdfs/industrie-miniere-quebecoise-aout-2011.pdf
CEMI (Centre for Excellence in Mining Innovation) (2014) CEMI Awarded $15 Million for Ultra-Deep Mining Network. https://www.miningexcellence.ca/?p=3095
Trudel, B., Nadeau, S., Zaras, K. and Deschamps, I. (2012) The Impact of Technological Innovation on Productivity and OHS Performance in Mining. Nordic Ergonomics Society, Stockholm, 19-22 August 2012.
Trudel, B. Zaras, K., Nadeau, S. and Deschamps, I. (2014) Introduction of Innovative Equipment in Mining: Impact on Productivity. American Journal of Industrial and Business Management, 4, 31-39. http://dx.doi.org/10.4236/ajibm.2014.41006