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Contamination skin doses and attenuation of radiation by clothing

机译:污染皮肤剂量并减少衣物的辐射

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摘要

The potential operating environment following an attack using CBRN (chemical, biological, radiological, nuclear) materials has led to design work aiming to reduce the physiological burden of protective clothing, while maintaining satisfactory levels of chemical protection. In this paper, we review the radiological protection provided by these lighter, thinner clothing options. Monte Carlo modelling has been used to determine the contribution to skin dose from both beta and gamma radiation from four sources, each with different emission characteristics. The protection factors for eight materials have been characterised in terms of the surface density of each material (ranging from 50 to 482 g m-2). As protective clothing is made lighter and more breathable, the radiological protection is significantly reduced. This work has provided quantitative analysis of the magnitude of this reduction. A simple algorithm has been derived which can be used to estimate the protection factor for any clothing, on the basis of the surface density of the material (within the range of materials studied). These results show the need for skin radiation exposure to be considered by protective suit designers and CBRN response planners.
机译:使用CBRN(化学,生物,放射,核)材料袭击后的潜在操作环境导致设计工作旨在减轻防护服的生理负担,同时保持令人满意的化学防护水平。在本文中,我们回顾了这些较轻,较薄的衣服选项所提供的放射防护。蒙特卡洛模型已被用来确定来自四个辐射源的β和γ辐射对皮肤剂量的贡献,每个辐射源具有不同的发射特性。根据每种材料的表面密度(范围为50到482 g m-2)来表征八种材料的保护因子。随着防护服变得更轻便,更透气,放射防护能力大大降低。这项工作提供了这种减少幅度的定量分析。已经得出了一种简单的算法,该算法可根据材料的表面密度(在所研究的材料范围内)估算任何衣服的保护系数。这些结果表明,防护服设计师和CBRN响应计划人员应考虑暴露于皮肤辐射。

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