Bellagamba Irene, Boccuni Fabio, Ferrante Riccardo, Tombolini Francesca, Natale Claudio, Marra Fabrizio, Sarto Maria Sabrina, Iavicoli Sergio
Research Center for Nanotechnology Applied to Engineering (CNIS), Sapienza University of Rome, I-00185 Rome, Italy.
Department of Astronautical, Electrical and Energy Engineering (DIAEE), Sapienza University of Rome, I-00184 Rome, Italy.
Nanomaterials (Basel). 2023 Apr 15;13(8):1378. doi: 10.3390/nano13081378.
Graphene-based polymer composites are innovative materials which have recently found wide application in many industrial sectors thanks to the combination of their enhanced properties. The production of such materials at the nanoscale and their handling in combination with other materials introduce growing concerns regarding workers' exposure to nano-sized materials. The present study aims to evaluate the nanomaterials emissions during the work phases required to produce an innovative graphene-based polymer coating made of a water-based polyurethane paint filled with graphene nanoplatelets (GNPs) and deposited via the spray casting technique. For this purpose, a multi-metric exposure measurement strategy was adopted in accordance with the harmonized tiered approach published by the Organization for Economic Co-operation and Development (OECD). As a result, potential GNPs release has been indicated near the operator in a restricted area not involving other workers. The ventilated hood inside the production laboratory guarantees a rapid reduction of particle number concentration levels, limiting the exposure time. Such findings allowed us to identify the work phases of the production process with a high risk of exposure by inhalation to GNPs and to define proper risk mitigation strategies.
基于石墨烯的聚合物复合材料是一种创新材料,由于其增强性能的组合,最近在许多工业领域得到了广泛应用。在纳米尺度上生产此类材料以及将它们与其他材料结合处理,引发了人们对工人接触纳米材料的日益关注。本研究旨在评估在生产一种由填充有石墨烯纳米片(GNPs)的水性聚氨酯涂料制成的创新型基于石墨烯的聚合物涂层并通过喷涂技术沉积所需的工作阶段中的纳米材料排放情况。为此,根据经济合作与发展组织(OECD)发布的统一分层方法,采用了多指标暴露测量策略。结果表明,在不涉及其他工人的受限区域内,靠近操作员处可能会有GNPs释放。生产实验室内的通风罩可确保颗粒物数量浓度水平迅速降低,从而限制暴露时间。这些发现使我们能够识别生产过程中通过吸入接触GNPs风险较高的工作阶段,并确定适当的风险缓解策略。