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弧焊中的人工光辐射光生物危害。

Artificial Optical Radiation photobiological hazards in arc welding.

作者信息

Gourzoulidis G A, Achtipis A, Topalis F V, Kazasidis M E, Pantelis D, Markoulis A, Kappas C, Bourousis C A

机构信息

Department of Medical Physics, University of Thessaly, Larissa, Greece; Hazardous Agents Department, OHS Directorate, Hellenic Ministry of Labor, Athens, Greece.

Hazardous Agents Department, OHS Directorate, Hellenic Ministry of Labor, Athens, Greece.

出版信息

Phys Med. 2016 Aug;32(8):981-6. doi: 10.1016/j.ejmp.2016.07.001. Epub 2016 Jul 12.

Abstract

Occupational Health and Safety (OHS) is associated with crucial social, economic, cultural and technical issues. A highly specialized OHS sector deals with the photobiological hazards from artificial optical radiation (AOR), which is divided into visible light, UV and IR emitted during various activities and which is legally covered by European Directive 2006/25/EC. Among the enormous amount of sources emitting AOR, the most important non-coherent ones to consider for health effects to the whole optical range, are arcs created during metal welding. This survey presents the effort to assess the complicated exposure limits of the Directive in the controlled environment of a welding laboratory. Sensors covering the UV and blue light range were set to measure typical welding procedures reproduced in the laboratory. Initial results, apart from apparently justifying the use of Personal Protective Equipment (PPE) due to even subsecond overexposures measured, also set the basis to evaluate PPE's properties and support an integrated risk assessment of the complex welding environment. These results can also improve workers' and employer's information and training about radiation hazards, which is a crucial OHS demand.

摘要

职业健康与安全(OHS)与关键的社会、经济、文化和技术问题相关联。一个高度专业化的职业健康与安全部门应对来自人工光辐射(AOR)的光生物危害,人工光辐射分为各种活动中发出的可见光、紫外线和红外线,并且在法律上受欧洲指令2006/25/EC涵盖。在发出人工光辐射的大量光源中,就对整个光学范围的健康影响而言,最重要的非相干光源是金属焊接过程中产生的电弧。本次调查展示了在焊接实验室的受控环境中评估该指令复杂暴露限值的努力。设置了覆盖紫外线和蓝光范围的传感器,以测量在实验室中重现的典型焊接程序。初步结果除了因测量到甚至亚秒级的过度暴露而显然证明使用个人防护装备(PPE)的合理性外,还为评估个人防护装备的性能以及支持对复杂焊接环境的综合风险评估奠定了基础。这些结果还可以改善工人和雇主关于辐射危害的信息及培训,这是职业健康与安全的一项关键要求。

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