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Advanced Reach Tool (ART): Development of the Mechanistic Model

机译:高级到达工具(ART):机械模型的开发

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This paper describes the development of the mechanistic model within a collaborative project, referred to as the Advanced REACH Tool (ART) project, to develop a tool to model inhalation exposure for workers sharing similar operational conditions across different industries and locations in Europe. The ART mechanistic model is based on a conceptual framework that adopts a source receptor approach, which describes the transport of a contaminant from the source to the receptor and defines seven independent principal modifying factors: substance emission potential, activity emission potential, localized controls, segregation, personal enclosure, surface contamination, and dispersion. ART currently differentiates between three different exposure types: vapours, mists, and dust (fumes, fibres, and gases are presently excluded). Various sources were used to assign numerical values to the multipliers to each modifying factor. The evidence used to underpin this assessment procedure was based on chemical and physical laws. In addition, empirical data obtained from literature were used. Where this was not possible, expert elicitation was applied for the assessment procedure. Multipliers for all modifying factors were peer reviewed by leading experts from industry, research institutes, and public authorities across the globe. In addition, several workshops with experts were organized to discuss the proposed exposure multipliers. The mechanistic model is a central part of the ART tool and with advancing knowledge on exposure, determinants will require updates and refinements on a continuous basis, such as the effect of worker behaviour on personal exposure, ‘best practice’ values that describe the maximum achievable effectiveness of control measures, the intrinsic emission potential of various solid objects (e.g. metal, glass, plastics, etc.), and extending the applicability domain to certain types of exposures (e.g. gas, fume, and fibre exposure).
机译:本文介绍了在协作项目(称为高级REACH工具(ART)项目)中机械模型的开发,目的是为在欧洲不同行业和地区共享相似操作条件的工人开发一种用于模拟吸入暴露的工具。 ART机理模型基于采用源受体方法的概念框架,该概念框架描述了污染物从源向受体的传输,并定义了七个独立的主要修正因子:物质排放潜力,活动排放潜力,局部控制,隔离,个人外壳,表面污染和分散。目前,ART可以区分三种不同的暴露类型:蒸气,雾气和灰尘(目前不包括烟,纤维和气体)。使用各种来源为乘数分配数值给每个修改因子。用于支持此评估程序的证据基于化学和物理法则。另外,使用从文献中获得的经验数据。在不可能的情况下,将专家征召用于评估程序。来自全球的行业,研究机构和公共机构的领先专家对所有修改因子的乘数进行了同行评审。此外,还组织了几次专家研讨会,讨论拟议的曝光倍数。机械模型是ART工具的核心部分,随着对接触的了解不断提高,决定因素将需要不断进行更新和完善,例如工人行为对个人接触的影响,描述最佳可实现性的“最佳实践”值控制措施的有效性,各种固体物体(例如金属,玻璃,塑料等)的固有发射潜能,并将适用范围扩展到某些类型的暴露(例如气体,烟尘和纤维暴露)。

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