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1.
Safety and Health at Work ; : 237-245, 2017.
Article in English | WPRIM | ID: wpr-43193

ABSTRACT

BACKGROUND: Solar furnaces are used worldwide to conduct experiments to demonstrate the feasibility of solar–chemical processes with the aid of concentrated sunlight, or to qualify high temperature-resistant components. In recent years, high-flux solar simulators (HFSSs) based on short-arc xenon lamps are more frequently used. The emitted spectrum is very similar to natural sunlight but with dangerous portions of ultraviolet light as well. Due to special benefits of solar simulators the increase of construction activity for HFSS can be observed worldwide. Hence, it is quite important to protect employees against serious injuries caused by ultraviolet radiation (UVR) in a range of 100 nm to 400 nm. METHODS: The UV measurements were made at the German Aerospace Center (DLR), Cologne and Paul-Scherrer-Institute (PSI), Switzerland, during normal operations of the HFSS, with a high-precision UV-A/B radiometer using different experiment setups at different power levels. Thus, the measurement results represent UV emissions which are typical when operating a HFSS. Therefore, the biological effects on people exposed to UVR was investigated systematically to identify the existing hazard potential. RESULTS: It should be noted that the permissible workplace exposure limits for UV emissions significantly exceeded after a few seconds. One critical value was strongly exceeded by a factor of 770. CONCLUSION: The prevention of emissions must first and foremost be carried out by structural measures. Furthermore, unambiguous protocols have to be defined and compliance must be monitored. For short-term activities in the hazard area, measures for the protection of eyes and skin must be taken.


Subject(s)
Compliance , Skin , Sunlight , Switzerland , Ultraviolet Rays , Xenon
2.
Korean Journal of Dermatology ; : 46-51, 1996.
Article in Korean | WPRIM | ID: wpr-129914

ABSTRACT

BACKGROUND: The need for using sunscreen is increasing today, but we know little about the effect of sunscreens on the skin of Korean people. OBJECTIVE: We tried to estimate and compare the SPF of 8% homomenthyl salicylate lotion, which was recommended as the control in SPF experiments by the FDA, USA, in Koreans according to different light sources. METHODS: After application of 8% homomenthyl salicylate lotion to the back, 33 men of the third decade were irradiated by xenon arc solar simulator or by fluorescent sunlamp, We estimated the SPF of them 24 hours later. RESULTS: The SPF of 8% homomenthyl salicylate lotion was 4.8+/-0.8 with the solar simulator, 2.7+/-0.6 with the fluorescent sunlamp. CONCLUSION: We confimed that the SPF of 8% homomenthyl salicylate lotion with xenon arc solar simulator can be used as a control value in Koreans, and found out that the SPF with the fluorescent sunlamp was significantly lower than that with the xenon arc lamp. So it should be taken into consideration that differences of SPF according to light sources exists in studying sunscreens.


Subject(s)
Humans , Male , Skin , Solar System , Sun Protection Factor , Sunscreening Agents , Xenon
3.
Korean Journal of Dermatology ; : 46-51, 1996.
Article in Korean | WPRIM | ID: wpr-129899

ABSTRACT

BACKGROUND: The need for using sunscreen is increasing today, but we know little about the effect of sunscreens on the skin of Korean people. OBJECTIVE: We tried to estimate and compare the SPF of 8% homomenthyl salicylate lotion, which was recommended as the control in SPF experiments by the FDA, USA, in Koreans according to different light sources. METHODS: After application of 8% homomenthyl salicylate lotion to the back, 33 men of the third decade were irradiated by xenon arc solar simulator or by fluorescent sunlamp, We estimated the SPF of them 24 hours later. RESULTS: The SPF of 8% homomenthyl salicylate lotion was 4.8+/-0.8 with the solar simulator, 2.7+/-0.6 with the fluorescent sunlamp. CONCLUSION: We confimed that the SPF of 8% homomenthyl salicylate lotion with xenon arc solar simulator can be used as a control value in Koreans, and found out that the SPF with the fluorescent sunlamp was significantly lower than that with the xenon arc lamp. So it should be taken into consideration that differences of SPF according to light sources exists in studying sunscreens.


Subject(s)
Humans , Male , Skin , Solar System , Sun Protection Factor , Sunscreening Agents , Xenon
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