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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Limitations and information needs for engineered nanomaterial-Specific exposure estimation and scenarios: Recommendations for improved reporting practices
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Limitations and information needs for engineered nanomaterial-Specific exposure estimation and scenarios: Recommendations for improved reporting practices

机译:工程纳米材料的局限性和信息需求-特定暴露估算和情景:关于改进报告实践的建议

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摘要

The aim of this paper is to describe the process and challenges in building exposure scenarios for engineered nanomaterials (ENM), using an exposure scenario format similar to that used for the European Chemicals regulation (REACH). Over 60 exposure scenarios were developed based on information from publicly available sources (literature, books, and reports), publicly available exposure estimation models, occupational sampling campaign data from partnering institutions, and industrial partners regarding their own facilities. The primary focus was on carbon-based nanomaterials, nano-silver (nano-Ag) and nano-titanium dioxide (nano-TiO _2), and included occupational and consumer uses of these materials with consideration of the associated environmental release. The process of building exposure scenarios illustrated the availability and limitations of existing information and exposure assessment tools for characterizing exposure to ENM, particularly as it relates to risk assessment. This article describes the gaps in the information reviewed, recommends future areas of ENM exposure research, and proposes types of information that should, at a minimum, be included when reporting the results of such research, so that the information is useful in a wider context.
机译:本文的目的是使用类似于欧洲化学品法规(REACH)的暴露情景格式来描述构建工程纳米材料(ENM)暴露情景的过程和挑战。根据来自公开来源(文献,书籍和报告)的信息,公开可获得的暴露估计模型,合作机构和工业合作伙伴关于其自身设施的职业采样活动数据,开发了60多种暴露场景。主要重点是碳基纳米材料,纳米银(nano-Ag)和纳米二氧化钛(nano-TiO _2),并考虑到相关的环境释放,包括这些材料的职业和消费者用途。建立暴露情景的过程说明了表征ENM暴露的现有信息和暴露评估工具的可用性和局限性,尤其是与风险评估有关的工具。本文介绍了所审查信息中的差距,建议了ENM暴露研究的未来领域,并提出了在报告此类研究结果时至少应包括的信息类型,以便在更广泛的背景下有用。

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