Volume 14, Issue 1 (3-2024)                   J Health Saf Work 2024, 14(1): 174-198 | Back to browse issues page

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Naziri S H, Pouyakian M, Sadegh Hassani S, Farhang Dehghan S. Risk Management of Engineered Nanomaterials at Workplaces: A Narrative Review on Available Frameworks and Tools. J Health Saf Work 2024; 14 (1) :174-198
URL: http://jhsw.tums.ac.ir/article-1-6946-en.html
1- School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran
2- Catalysis Research Division, Research Institute of Petroleum Industry (RIPI), Tehran, Iran
3- School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran / Environmental and Occupational Hazards Control Research Center, Research Institute for Health Sciences and Environment, Shahid Beheshti University of Medical Sciences, Tehran, Iran , somayeh.farhang@sbmu.ac.ir
Abstract:   (500 Views)
Introduction: Due to uncertainties regarding the risks of engineered nanomaterials for human health and the environment, different organizations and researchers have developed various management frameworks and assessment tools to mitigate hazards during the procedures and applications of engineered nanomaterials. However, most of these techniques do not meet all the individual requirements. This study provides a review and introduction to the techniques developed for the management of safety, health, and environmental risks associated with engineered nanomaterials.
Material and Methods: In order to find pertinent documents on the safe handling of engineered nanomaterials, a search was conducted using the following keywords: “Engineered nanomaterials”, “Framework”, “Tool”, “Risk management”, “Occupational exposure”, “Environment”, “Risk assessment”, and “Nanotechnology”. The search was conducted on various databases, including Scopus, Web of Science, NIOSH, ECHA, and ISO. Among the search results, tools and frameworks that specifically focus on the safety, health, and environmental risk management or assessment of engineered nanomaterials were selected.
Results: Among the search results, 17 frameworks and 11 developments in the field of managing occupational, environmental, and toxicological risks associated with engineered nanomaterials were discussed. Various frameworks and tools for identifying, evaluating, and managing the potential risks of engineered nanomaterials vary in terms of their scope, goals, risk assessment approaches, and output, offering diverse applications.
Conclusion: Various tools and frameworks, each with unique properties, applications, and limitations, can assist organizations in achieving their goals related to safety, health, and environmental issues in the field of nanotechnology. Currently, there is no consensus on the optimal approach for assessing the risks of nanomaterials, underscoring the necessity for additional research, development, and collaboration in this field.
 
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Type of Study: Review |
Received: 2024/03/28 | Accepted: 2024/03/29 | Published: 2024/03/29

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