Affiliation:
1. School of Human Sciences (Sport Science, Exercise and Health), The University of Western Australia , 35 Stirling Highway, Crawley, WA 6009 , Australia
Abstract
Abstract
The objective of this study was to explore the association between ambient temperature and injuries and illnesses experienced by mine industry workers. Eleven years of de-identified data from a mine industry company in Australia was explored in regards to injuries and illnesses occurring due to outdoor exposure. Each case was filtered for reported symptoms, and meteorological data to match the location of the mine site and date reported were sourced. Of the 18 931 injuries and illnesses observed over the 11-year period, 151 cases of heat-related illness due to outdoor exposure were reported. Twenty-five conditions/symptoms of heat-illness were found, with the most prevalent being dehydration (n = 81), followed by heat rash (n = 40), dizziness (n = 24), and headache (n = 23). The mean number of symptoms reported by each worker was 2 ± 1. There was a positive correlation between ambient temperature and injuries/illnesses (r2 = 0.89, P < 0.001), where, as temperature increased so did the number of reported heat-related illnesses. Underreporting of heat-related illness and injury in the mining industry is likely, which is a risk to the health and wellbeing of employees. Workers require industry specific training about the severity of heat stress and the associated prevention strategies.
Publisher
Oxford University Press (OUP)
Reference20 articles.
1. Effect of summer outdoor temperatures on work-related injuries in quebec (canada);Adam-Poupart,2015
2. Workers’ perception heat stress: results from a pilot study conducted in italy during the covid-19 pandemic in 2020;Bonafede;Int J Environ Res Public Health,2022
3. National athletic trainers’ association position statement: fluid replacement for athletes;Casa;J Athl Train,2000
4. Heat exhaustion in a deep underground metalliferous mine;Donoghue,2000
5. An advanced empirical model for quantifying the impact of heat and climate change on human physical work capacity;Foster,2021