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首页> 外文期刊>Journal of occupational and environmental hygiene >Concepts of skin protection: considerations for the evaluation and terminology of the performance of skin protective equipment.
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Concepts of skin protection: considerations for the evaluation and terminology of the performance of skin protective equipment.

机译:皮肤保护的概念:评估皮肤保护设备性能的术语。

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This article proposes a common language for better understanding processes involved in dermal exposure and skin protection. A conceptual model has been developed that systematically describes the transport of agent mass from sources, eventually resulting in "loading" of the skin surface or the skin contaminant layer. In view of a harmonized glossary of exposure terminology this is considered the exposure surface. Loading is defined as agent mass present in this layer divided by the exposure surface area. Skin protective equipment (SPE) is meant to reduce uptake, that is, an agent crosses the absorption barrier of the skin, by intervening in the processes of loading the exposure surface; however, the design of the equipment may fail to cover skin surface entirely. In addition, part of the mass intercepted by the SPE may reach the skin surface either by permeation, penetration, or by transfer when touching the contaminated exterior of the SPE. Evaluation of SPE performance has earlier focused on chemicalresistance performance testing for permeation, penetration, or degradation of SPE-materials. In use-scenario practice, however, all processes will occur concurrently. Thus, SPE field performance evaluation including user-SPE interaction complementary to material testing is warranted. Results of laboratory testing for SPE-materials are reported as substance-specific breakthrough times and permeation rates. SPE field performance should be evaluated for reduction of either uptake or parameters that reflect the outcome of dermal exposure. Ideally, this should be based on the results of intervention-type workplace studies, for (e.g., assessment of exposure loading). The level of reduction can be expressed as a protection factor (ratio without/with SPE) for different parameters of dermal exposure or uptake. It is concluded that for evaluation of SPE-type performance, generic protection factors can be derived for substance-independent processes (e.g., reduction of exposure loading) but not for substance-specific reduction of uptake.
机译:本文提出了一种通用语言,用于更好地了解与皮肤接触和皮肤保护有关的过程。已经开发出概念模型,该模型系统地描述了来自源的药剂质量的传输,最终导致皮肤表面或皮肤污染物层的“负载”。考虑到曝光术语的统一术语,将其视为曝光表面。负载定义为存在于该层中的试剂质量除以暴露表面积。皮肤保护设备(SPE)旨在通过干预暴露表面的加载过程来减少摄取,即一种试剂越过皮肤的吸收屏障;但是,设备的设计可能无法完全覆盖皮肤表面。另外,当接触到SPE的污染外部时,被SPE拦截的部分物质可能会通过渗透,渗透或转移而到达皮肤表面。对SPE性能的评估早先集中在对SPE材料渗透,渗透或降解的耐化学性能测试。但是,在使用场景的实践中,所有过程将同时发生。因此,必须进行SPE现场性能评估,包括与材料测试相辅相成的用户-SPE交互作用。 SPE材料的实验室测试结果报告为特定于物质的穿透时间和渗透率。应该评估SPE田间性能,以减少摄取量或反映真皮暴露结果的参数。理想情况下,这应基于干预型工作场所研究的结果,例如(评估暴露负荷)。减少水平可以表示为针对皮肤暴露或摄入的不同参数的保护因子(不使用/使用SPE的比率)。结论是,对于SPE型性能的评估,可以针对与物质无关的过程(例如,减少接触负荷)推导通用保护因子,但对于特定于物质的吸收却不能推导。

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