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Taking stock of the occupational safety and health challenges of nanotechnology: 2000-2015

机译:纳米技术职业安全与健康挑战征收纳米技术:2000-2015

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摘要

Engineered nanomaterials significantly entered commerce at the beginning of the 21st century. Concerns about serious potential health effects of nanomaterials were widespread. Now, approximately 15 years later, it is worthwhile to take stock of research and efforts to protect nanomaterial workers from potential risks of adverse health effects. This article provides and examines timelines for major functional areas (toxicology, metrology, exposure assessment, engineering controls and personal protective equipment, risk assessment, risk management, medical surveillance, and epidemiology) to identify significant contributions to worker safety and health. The occupational safety and health field has responded effectively to identify gaps in knowledge and practice, but further research is warranted and is described. There is now a greater, if imperfect, understanding of the mechanisms underlying nanoparticle toxicology, hazards to workers, and appropriate controls for nanomaterials, but unified analytical standards and exposure characterization methods are still lacking. The development of control-banding and similar strategies has compensated for incomplete data on exposure and risk, but it is unknown how widely such approaches are being adopted. Although the importance of epidemiologic studies and medical surveillance is recognized, implementation has been slowed by logistical issues. Responsible development of nanotechnology requires protection of workers at all stages of the technological life cycle. In each of the functional areas assessed, progress has been made, but more is required.
机译:工程纳米材料在21世纪初显着进入商业。对纳米材料的严重潜在健康影响的担忧是普遍的。现在,大约15年后,对研究和努力造成缺乏健康影响的潜在风险的研究和努力来保护纳米材料的措施是值得的。本文提供了和检查了主要功能区的时间表(毒理学,计量,暴露评估,工程控制和个人防护设备,风险评估,风险管理,医疗监测和流行病学),以确定工人安全和健康的重要贡献。职业安全和健康领域已有效地响应,以确定知识和实践中的差距,但有权进行进一步的研究,并描述。现在有更大的,如果不完美,了解纳米粒子毒理学的机制,对工人的危害以及适当对纳米材料的适当对照,但仍然缺乏统一的分析标准和曝光表征方法。控制扎带和类似策略的发展已经补偿了对暴露和风险的不完整数据,但是未知是如何采用这种方法的广泛。虽然公认流行病学研究和医疗监测的重要性,但后勤问题的实施已经减缓。纳米技术的负责任的发展需要在技术生命周期的所有阶段保护工人。在评估的每个功能区域,已经取得了进展,但需要更多。

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