Exposure To Heat Stress Solar Ultraviolet Radiation And Other Occupational Health Hazards Among Groundskeepers At East Carolina University PDF Download

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Exposure to Heat Stress, Solar Ultraviolet Radiation and Other Occupational Health Hazards Among Groundskeepers at East Carolina University

Exposure to Heat Stress, Solar Ultraviolet Radiation and Other Occupational Health Hazards Among Groundskeepers at East Carolina University
Author: Nicole C Beck
Publisher:
Total Pages: 112
Release: 2016
Genre:
ISBN:

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Groundskeepers work most of the year outdoors, performing physically demanding duties. The amount of time spent working outdoors exposes groundskeepers to various hazards including physical hazards (hot temperatures, cold temperatures, ultraviolet radiation [UVR]), various arthropods (e.g., mosquitoes, ticks), and ergonomic hazards associated with bending, kneeling, and awkward posture for prolonged periods. This study assessed exposure to heat, cold, UVR, arthropods, and ergonomic hazards among East Carolina University groundskeepers (n=44). Groundskeepers completed pre-and post-surveys to determine any changes in hazard exposures and knowledge on personal protective equipment (PPE) use. Heat stress indices and UV indices were recorded three times a day (morning, noon, afternoon) in work areas. Heat stress, UVR monitoring and arthropod collection were conducted during three seasons: summer, fall, spring. Arthropod collections were conducted in selected work areas weekly. Differences in the mean and median heat stress and UV indices within the seasons (P[less than]0.01), months (P[less than]0.01), and time of day (P[less than]0.01) were significant. In addition, differences in the mean and median UV indices by weather were also significant (P[less than]0.01). Heat stress, UVR monitoring and arthropod collection were conducted during three seasons: summer, fall, spring. Arthropod collections were conducted in selected work areas weekly. The only diurnal arthropods collected were four Aedes Albopictus mosquitoes and 864 mosquitoes of five genera and 14 species were collected. Findings of this study will be beneficial in identifying recommended controls for heat stress (e.g., scheduling heavy work during colder months and times of the day, taking frequent breaks, sufficient fluid intake) and UVR (e.g. scheduling outdoor work in the morning, personal protective equipment use) exposure.


Solar Ultraviolet (UV) Radiation Exposure in Outdoor Working Environment During Cold Months

Solar Ultraviolet (UV) Radiation Exposure in Outdoor Working Environment During Cold Months
Author: Nanaobaayaa Owusu
Publisher:
Total Pages: 91
Release: 2022
Genre:
ISBN:

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Professions that are predominantly based outdoors have the risk of workers being exposed to solar ultraviolet (UV) radiation every day and during every season. Multiple studies have been conducted on outdoor workers' UV exposure during spring and summer months, but studies detailing their exposure during winter months are rare. The purpose of this study was to assess the UV exposure of groundskeepers employed at East Carolina University (ECU) during cold seasons (fall, winter, spring) compared to the summer season and to determine if UV exposure during cold seasons exceeded the Threshold Limit Values (TLVs) set by the American Conference of Governmental Industrial Hygienists (ACGIH) as occupational exposure limits. Area monitoring of UV radiation was conducted to measure the UV effective irradiance (UVeff) using a weatherproof erythema UV detector and a digital data-logging radiometer. Ambient temperature was also collected using the OSHA-NIOSH Heat Safety Tool app. Data were collected for one year in order to have data for every season. Data analysis was conducted using analysis of variance (ANOVA) to compare UVeff by month and season, and using Pearson correlation coefficient to analyze the strength and direction between UVeff and ambient temperature. Results showed that hourly and daily UV exposures exceeded the 1-hr and 8-hr TLVs, respectively, during cold months. The hourly TLV exceedance percentages for November, December, January and February were 78.0%, 62.7%, 73.4% and 74.3%, respectively. December had the lowest hourly (0.0020 ± 0.0018 mW/cm2) and daily (0.0020 ± 0.0006 mW/cm2) mean UVeff but 62.7% and 100% of the hourly and daily data still exceeded the 1-hr and 8-hr TLVs. The seasonal average UVeff for summer (0.0095 ± 0.0025 mW/cm2) was significantly higher than winter (0.0034 ± 0.0017 mW/cm2). The seasonal average UVeff for fall (0.0044 ± 0.0017 mW/cm2) compared to the summer is much lower and is closer to the winter average. The seasonal average UVeff for spring (0.0096 ± 0.0026 mW/cm2) compared to the summer is slightly higher and is also higher than the winter and fall averages. Overall, the UVeff positively correlates with the ambient temperature, as expected. Study findings demonstrate that groundskeepers and other outdoor workers, as well as the general public, should continue to use preventive measures to reduce UV exposures during the cold months to reduce risk to UV-related adverse health effects.


Occupational Exposure to Ultraviolet Radiation

Occupational Exposure to Ultraviolet Radiation
Author: National Institute for Occupational Safety and Health
Publisher:
Total Pages: 112
Release: 1972
Genre: Industrial hygiene
ISBN:

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Solar Ultraviolet Radiation Exposure of Outdoor Workers

Solar Ultraviolet Radiation Exposure of Outdoor Workers
Author: Vanessa Hammond
Publisher: LAP Lambert Academic Publishing
Total Pages: 96
Release: 2011
Genre: Industrial hygiene
ISBN: 9783845406428

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Exposure to solar ultraviolet radiation (UVR) is an occupational health and safety issue for outdoor occupations, since excessive exposure is associated with negative health outcomes, including eye conditions, and skin cancers.In this study, electronic dosimeters were used to record time-stamped UVR exposure of a convenience sample of 77 workers from three occupations: building, horticulture, and roading, selected from listings in Central Otago yellow pages directories. Workers kept a diary record of concurrent sun-protective practices and completed a questionnaire on sun-related knowledge, attitudes towards suntans, and perceptions of workplace socio-cultural environment. The two outcomes were UVR exposure and sun-protective practices.Using the Haddon Matrix and Ottawa Charter for Health Promotion to structure and guide the research, variables potentially associated with the outcomes were considered from the host (worker) and the socio-cultural environment (workplace) domains. Host factors included (1) sun and skin cancer related knowledge, (2) attitudes towards suntans, and (3) perceived risk of skin cancer..


Working in Hot Environments

Working in Hot Environments
Author:
Publisher:
Total Pages: 28
Release: 1986
Genre: Environmental health
ISBN:

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Sun Safety at Work

Sun Safety at Work
Author: Peter Strahlendorf
Publisher: Independently Published
Total Pages: 132
Release: 2020-06-19
Genre:
ISBN:

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Worldwide, skin cancer is the most diagnosed cancer, with one in three cancers being a skin cancer. For outdoor workers, prolonged sun exposure is an important workplace hazard that can cause skin cancer and heat stress, both of which are largely preventable. However, outdoor workers are regularly over-exposed to the sun, often exceeding the recognized exposure limits by many times. They are also often not well protected. As implementing effective sun safety measures is challenging, this Guide, along with its supporting resources, will help workplaces better protect their outdoor workers. This Guide provides a step-by-step process to develop a Sun Safety Program that is designed to complement existing safety practices and be embedded within a workplace's occupational health and safety management system.


Exposure of Car Guards to Solar Ultraviolet Radiation During Summer and Winter

Exposure of Car Guards to Solar Ultraviolet Radiation During Summer and Winter
Author:
Publisher:
Total Pages: 90
Release: 2020
Genre: Electronic dissertations
ISBN:

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Solar ultraviolet radiation -- Personal exposure -- Car guards -- Summer -- Winter -- Heat stress -- Electronic dosimeters and QUESTemp℗ð32/34.