在纳米材料研究环境中采用纳米安全标准:经验教训和改进潜力

Standards Pub Date : 2022-12-01 DOI:10.3390/standards2040034
Ioannis Kokkinopoulos, P. Karayannis, Stratos Saliakas, S. Damilos, E. Koumoulos
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引用次数: 0

摘要

目前,世界范围内对纳米技术进行了广泛的研究,纳米材料的应用也在不断扩大。鉴于其独特的固有特性,例如它们的小尺寸和增加的反应性,纳米材料可能会对职业、环境或消费者造成危害。因此,确保可持续利用纳米技术的一个非常重要的方面是建立适当的健康和安全做法。在过去的几十年里,纳米安全领域的研究取得了显著的成果,其中许多成果已经反映在标准化领域。在这项工作中,根据在研究背景下应用其原则所面临的障碍,介绍了重要的纳米安全标准(ISO/TS 12901-2:2014和ISO/TR 12885:2018)。对其应用提出了一个关键的观点,并指出了在使标准适应材料和应用过程中所面临的差距。此外,还强调了规避这些差距所遵循的方法,作为在未来标准化工作中可能克服这些障碍的建议。
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Employing Nanosafety Standards in a Nanomaterial Research Environment: Lessons Learned and Refinement Potential
Extensive research is currently being conducted on nanotechnologies worldwide, and the applications of nanomaterials are continuously expanding. Given their unique intrinsic characteristics, such as their small size and increased reactivity, nanomaterials may pose an occupational, environmental or consumer hazard. Therefore, a highly important aspect of ensuring the sustainable use of nanotechnologies is the establishment of proper health and safety practices. The area of nanosafety research has produced significant outcomes the last decades, and many of these achievements have been reflected in the standardization field. In this work, a discussion of prominent nanosafety standards (ISO/TS 12901-2:2014 and ISO/TR 12885:2018) is presented, based on the barriers faced during the endeavor to apply their principles within a research context. A critical viewpoint regarding their application is presented, and gaps faced in adapting the standards to the materials and processes applied are noted. Additionally, approaches that were followed to circumvent these gaps are also highlighted as suggestions to potentially overcome these barriers in future standardization efforts.
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