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‘Zonked the hell out’: Climate change and heat stress at work

Published online by Cambridge University Press:  01 January 2023

Elizabeth Humphrys*
Affiliation:
University of Technology Sydney, Australia
James Goodman
Affiliation:
University of Technology Sydney, Australia
Freya Newman
Affiliation:
University of Technology Sydney, Australia
*
Elizabeth Humphrys, Social and Political Sciences Program, University of Technology Sydney, P.O. Box 123, Broadway, Ultimo, NSW 2007, Australia. Email: elizabeth.humphrys@uts.edu.au

Abstract

Climate change is most directly felt by people who cannot escape its impacts, including workers whose source of livelihood may put them directly at risk from high heat. Research on these impacts for Australian workers, especially the sociopolitical determinants of effective workplace heat management, remains limited. This article presents findings from a national research project that investigated these issues in collaboration with the Australia-based United Workers Union. It reports on the experiences of members exposed to high heat, explores how they address heat stress and how they relate this to climate change. The article expands understanding of the impacts of workplace heat, especially for indoor workers and those in lower paid jobs, through a focus on how workers articulate their experiences and understand and exercise their agency at work.

Type
COVID, climate change, worker safety and inequality
Copyright
Copyright © The Author(s) 2022

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References

Basagaña, X, Escalera-Antezana, JP, Dadvand, P, et al. (2015) High ambient temperatures and risk of motor vehicle crashes in Catalonia, Spain (2000–2011): A time-series analysis. Environmental Health Perspectives 123(12): 13091316.CrossRefGoogle ScholarPubMed
Carter, S, Field, E, Oppermann, E, et al. (2020) The impact of perceived heat stress symptoms on work-related tasks and social factors: A cross-sectional survey of Australia’s Monsoonal North. Applied Ergonomics 82: 18.CrossRefGoogle ScholarPubMed
Day, E, Fankhauser, S, Kingsmill, N, et al. (2019) Upholding labour productivity under climate change: an assessment of adaptation options. Climate Policy 19(3): 367385.CrossRefGoogle Scholar
Ebi, KL, Capon, A, Berry, P, et al. (2021) Hot weather and heat extremes: Health risks. The Lancet 398(10301): 698708.CrossRefGoogle ScholarPubMed
Elling, RH (1989) The political economy of workers’ health and safety. Social Science & Medicine 28(11): 11711182.CrossRefGoogle ScholarPubMed
Hansen, A, Pisaniello, D, Varghese, B, et al. (2018) What can we learn about workplace heat stress management from a safety regulator complaints database? International Journal of Environmental Research and Public Health 15(3): 459.CrossRefGoogle ScholarPubMed
Humphrys, E (2019) How Labour Built Neoliberalism: Australia’s Accord, the Labour Movement and the Neoliberal Project. Studies in Critical Social Sciences 126. Leiden/Chicago, IL: Brill/Haymarket.CrossRefGoogle Scholar
Hyatt, OM, Lemke, B, Kjellstrom, T (2010) Regional maps of occupational heat exposure: Past, present, and potential future. Global Health Action 3(1): 5715.CrossRefGoogle ScholarPubMed
Intergovernmental Panel on Climate Change (IPCC) (2021) Summary for policy makers. Climate change 2021: The physical science basis. Contribution of working group I to the sixth assessment report of the intergovernmental panel on climate change. Cambridge: Cambridge University Press.Google Scholar
International Labour Organization (ILO) (2019) Working on a Warmer Planet: The Impact of Heat Stress on Labour Productivity and Decent Work. Geneva: International Labour Organisation. Available at: https://www.ilo.org/wcmsp5/groups/public/—dgreports/—dcomm/—publ/documents/publication/wcms_711919.pdf (accessed 13 August 2021).Google Scholar
Kjellstrom, T, Briggs, D, Freyberg, C, et al. (2016) Heat, human performance, and occupational health: A key issue for the assessment of global climate change impacts. Annual Review of Public Health 37: 97112.CrossRefGoogle ScholarPubMed
Lundgren, K, Kuklane, K, Gao, C, et al. (2013) Effects of heat stress on working populations when facing climate change. Industrial Health 51(1): 315.CrossRefGoogle ScholarPubMed
McInnes, JA, MacFarlane, EM, Sim, MR, et al. (2017) Working in hot weather: A review of policies and guidelines to minimise the risk of harm to Australian workers. Injury Prevention 23(5): 334339.CrossRefGoogle ScholarPubMed
Newman, F, Humphrys, E (2020) Construction workers in a climate precarious world. Critical Sociology 45(4–5): 557572.Google Scholar
Oppermann, E, Strengers, Y, Maller, C, et al. (2018) Beyond threshold approaches to extreme heat: Repositioning adaptation as everyday practice. Weather, Climate, and Society 10(4): 885898.CrossRefGoogle Scholar
Park, RJ, Pankratz, N, Behrer, AP (2021) Temperature, workplace safety, and labor market inequality. Discussion Paper Series 14560, IZA Institute of Labor Economics. Available at: https://ftp.iza.org/dp14560.pdf (accessed 16 October 2021).Google Scholar
Rowlinson, S, YunyanJia, A, Li, B, et al. (2014) Management of climatic heat stress risk in construction: A review of practices, methodologies, and future research. Accident Analysis and Prevention 66: 187198.CrossRefGoogle ScholarPubMed
Singh, S, Hanna, EG, Kjellstrom, T (2015) Working in Australia’s heat: Health promotion concerns for health and productivity. Health Promotion International 30(2): 239250.CrossRefGoogle ScholarPubMed
The Lancet (2021) Health in a world of extreme heat. The Lancet 398(10301): 641.CrossRefGoogle Scholar
Underhill, E, Rimmer, M (2015) Itinerant foreign harvest workers in Australia: The impact of precarious employment on occupational safety and health. Policy and Practice in Health and Safety 13(2): 2546.CrossRefGoogle Scholar
Varghese, BM, Barnett, AG, Hansen, AL, et al. (2019a) The effects of ambient temperatures on the risk of work-related injuries and illnesses: Evidence from Adelaide, Australia 2003–2013. Environmental Research 170: 101109.CrossRefGoogle ScholarPubMed
Varghese, BM, Barnett, AG, Hansen, AL, et al. (2019b) Characterising the impact of heatwaves on work-related injuries and illnesses in three Australian cities using a standard heatwave definition – Excess Heat Factor (EHF). Journal of Exposure Science and Environmental Epidemiology 29: 821830.CrossRefGoogle ScholarPubMed
Vicedo-Cabrera, AM, Scovronick, N, Sera, F, et al. (2021) The burden of heat-related mortality attributable to recent human-induced climate change. Nature Climate Change 11(6): 492500.CrossRefGoogle ScholarPubMed
Wahlquist, C (2020) Australia’s summer bushfire smoke killed 445 and put thousands in hospital, inquiry hears. The Guardian, 26 May. Available at: https://www.theguardian.com/australia-news/2020/may/26/australias-summer-bushfire-smoke-killed-445-and-put-thousands-in-hospital-inquiry-hears (accessed 12 October 2021).Google Scholar
Williams, S, Varghese, BM, Hansen, AL, et al. (2020) Workers’ health and safety in the heat: Current practice in Australian workplaces. Policy and Practice in Health and Safety 18(2): 6779.CrossRefGoogle Scholar
Xiang, J, Hansen, A, Pisaniello, D, et al. (2015) Extreme heat and occupational heat illnesses in South Australia, 2001–2010. Occupational and environmental medicine 72(8): 580586.CrossRefGoogle ScholarPubMed
Xiang, J, Hansen, A, Pisaniello, D, et al. (2016) Workers’ perceptions of climate change related extreme heat exposure in South Australia: A cross-sectional survey. BMC Public Health 16(1): 549.CrossRefGoogle ScholarPubMed
Zander, KK, Mathew, S, Garnett, ST (2018) Exploring heat stress relief Measures among the Australian labour force. International Journal of Environmental Research and Public Health 15(3): 401.CrossRefGoogle ScholarPubMed