Xiang, Jianjun (2014) Extreme heat and workers' health in South Australia: Association, perceptions, and adaptations in the workplace. PhD thesis, University of Adelaide, Australia.
Abstract
Background: Occupational heat exposure may lead to adverse health effects and contribute to work-related injury, illness or even death. With the predicted increase in the frequency and intensity of extremely hot weather in South Australia, workplace heat exposure is presenting a growing challenge to workers' health and safety. This thesis aims to examine the effects of workplace heat exposure on workers' health and safety in Adelaide, South Australia, to investigate perceptions of risks associated with workplace heat exposure, and to provide scientific evidence for the development of heat necessary heat prevention and adaptation strategies particularly in a warming climate. Methods: This study can be broadly divided into two parts. The first part is the analyses of workers' compensation claim data and weather data, obtained from the SafeWork South Australia and the Bureau of Meteorology, respectively for 2001-2010. Time-series analysis approach was used to quantify the effects of heat exposure on workers' health and safety. Heat-related claims were identified according to the Type of Occurrence Classification System coding information and text-based diagnosis-related descriptions. Case-crossover analytic approach was undertaken to estimate the risk of occupational heat illnesses during heatwaves. The second part of this study comprises two cross-sectional questionnaire surveys to investigate how workers and occupational hygienists perceive the risk of workplace heat exposure and health impact. Results: Analyses of workers' compensation claim data Generally, there was a reversed U-shaped relationship between daily maximum temperature (Tmax) and daily injury claims in Adelaide. With increasing Tmax below certain threshold temperatures ranging from 31.8°C to 38.9°C, significant temperature-injury claims associations were found in the following sub-groups: young workers aged ≤24 years; those working in some outdoor industries such as 'agriculture, forestry and fishing', 'construction', and 'electricity, gas and water'; or employed as labourers, production and transport workers, and tradespersons in small and medium sized businesses. When the temperature was extremely hot, almost all industries had a decrease in injury claims, except the 'electricity, gas and water' industry. During heatwave (≥3 consecutive days with Tmax ≥35°C) periods, outdoor male labourers and tradespersons aged ≥55 years in 'agriculture, forestry and fishing' and 'electricity, gas and water' industries were found to be at higher risk of work-related injuries. Occupational burns, lacerations, amputations, and heat illnesses were found to be significantly associated with extreme heat, together with injuries resulting from moving objects, chemical exposures, and environmental factors. There were 306 heat-related injury claims reported during the 9-financial year period in South Australia, with an incidence rate of 4.5 per 100,000 workers. Relatively high heat illness incidence rates were observed in 'mining' and 'electricity, gas and water' industries, and those employed as labourers and tradespersons across the state during the study period. When Tmax was above 35.5°C, a 1°C increase of Tmax was associated with a 12.7% increase in occupational heat illness claims. During heatwave periods the risk of occupational heat illness was about 4-7 times higher than that of non-heatwave periods. Workers and occupational hygienists' perceptions on heat exposure Surveyed workers were moderately concerned about heat exposure. Young workers (≤24 years) were less concerned than older workers. Workers undertaking very physically demanding work, wearing personal protective equipment, or having had a previous heat illness/injury were found to be more concerned about heat exposure. The majority (90%) of occupational hygienists and specialists surveyed showed great concerns over heat stress, but they did not show strong willingness to amend heat prevention recommendations to management or companies. From the occupational hygienists' point of view, Austral an workplaces may not be well-prepared for the likelihood of increasing heat stress due to climate change. Conclusions: Findings from this study will provide essential epidemiological evidence for policy makers and relevant stakeholders to develop regulations and guidelines locally and /or internationally to reduce the impacts of extreme heat on workers' health and safety, particularly in the susceptible subgroups identified. Industrial specific workplace hot weather alerts and response mechanisms need to be developed via multi-sectoral cooperation between stakeholders to improve vulnerable groups' risk perceptions and knowledge about harm minimisation strategies during extremely hot weather. In a warming climate, there is a need to develop specific and clear enforceable heat regulations to ensure the implementation and compliance of heat policies.
| Item Type: | Thesis (Doctoral) |
|---|---|
| Thesis advisor: | Bi, Peng; Pisaniello, Dino Luigi and Hansen, Alana L |
| Uncontrolled Keywords: | climate change; heat stress; occupational health and safety; heatwave; perceptions; work-related injury |
| Index terms: | subgroup, adaptation, illness, vulnerable group, time-series analysis, implementation, estimate, prevention, compensation, heat stress, South Australia, personal protective equipment, mining, extreme heat, occupational health and safety, risk perception, strategy, survey, compliance, health and safety, injury, minimization, cooperation, hot weather, heatwave, exposure, environmental factor, weather, climate change, regulation, evidence, questionnaire |
| Subjects: | public and environmental health, management, environmental health, political science, health conditions and diseases, geotechnical engineering, research evaluation and metrics, occupational health and safety management, dispute resolution, air quality, data collection methods, financial and cost management, financial risk, health safety and environment, algorithms, physical geography and landforms, environmental hazards, communities and social development, research management, climate science, user focus, evaluation and assessment methods, contractual arrangements, environmental science, psychology |
| Topics: | Legal Issues, Procurement, Sustainability, Health and Safety, Geographical Context, Engineering Principles, Organizational Design, Design Practice, Digital Applications, Stakeholder Management, Governance, Cost Management, Business Strategy, Research Practice |
| Descriptive scope: | 4 PCEA |
N.B. Descriptive scope is a count of how many of the five facets of empirical research are indicated by the words used in title, abstract and keywords. It is not intended as a judgement on the research; merely a count of the kind of word we would expect to indicate Phenomenon, Concepts, Theoretical framing, Empirical techniques, Analytical techniques. If all five are present, then a code of “5 PCTEA” will indicate this. If you feel the coding for this record is questionable, we welcome discussion around the terms we matched or the way we categorized them. The facet you would expect may not be coded, or a facet may be coded inappropriately. This can also bear on a larger question, of which facets should be treated as defining in construction management research. Please get in touch, and we will look at it. More details here