Nanotechnologies Occupational Risk Management Applied To Engineered Nanomaterials Principles And Approaches


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Nanotechnologies. Occupational Risk Management Applied to Engineered Nanomaterials. Principles and Approaches


Nanotechnologies. Occupational Risk Management Applied to Engineered Nanomaterials. Principles and Approaches

Author: British Standards Institute Staff

language: en

Publisher:

Release Date: 1913-01-31


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Nanomaterials, Nanotechnology, Nanoparticles, Occupational safety, Hazards, Particulate air pollutants, Particulate materials, Environment (working), Risk assessment, Particle size measurement, Test equipment

Nanotechnologies - Occupational Risk Management Applied to Engineered Nanomaterials


Nanotechnologies - Occupational Risk Management Applied to Engineered Nanomaterials

Author:

language: en

Publisher:

Release Date: 2012


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"SO/TS 12901:2012 provides guidance on occupational health and safety measures relating to engineered nanomaterials, including the use of engineering controls and appropriate personal protective equipment, guidance on dealing with spills and accidental releases, and guidance on appropriate handling of these materials during disposal. ISO/TS 12901:2012 is intended for use by competent personnel, such as health and safety managers, production managers, environmental managers, industrial/occupational hygienists and others with responsibility for the safe operation of facilities engaged in production, handling, processing and disposal of engineered nanomaterials. ISO/TS 12901:2012 is applicable to engineered materials that consist of nano-objects such as nanoparticles, nanofibres, nanotubes and nanowires, as well as aggregates and agglomerates of these materials (NOAA)."-- Publisher's note.

Metrology and Standardization for Nanotechnology


Metrology and Standardization for Nanotechnology

Author: Elisabeth Mansfield

language: en

Publisher: John Wiley & Sons

Release Date: 2017-04-10


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For the promotion of global trading and the reduction of potential risks, the role of international standardization of nanotechnologies has become more and more important. This book gives an overview of the current status of nanotechnology including the importance of metrology and characterization at the nanoscale, international standardization of nanotechnology, and industrial innovation of nano-enabled products. First the field of nanometrology, nanomaterial standardization and nanomaterial innovation is introduced. Second, major concepts in analytical measurements are given in order to provide a basis for the reliable and reproducible characterization of nanomaterials. The role of standards organizations are presented and finally, an overview of risk management and the commercial impact of metrology and standardization for industrial innovations.