In 2016 Tappi International Conference on Nanotechnology for Renewable Materials we reported results on risk analysis of polymer composites containing CNF, based on the production at laboratory scale. Besides occupational exposure, the assessment also took into account consumer exposure and end-of-life. The overall conclusion of the risk evaluation was that no major concerns were found in the production, use and waste handling of the composites. In this presentation, we will take a step further and discuss the results of risk assessment performed for CNF-containing polymer composites produced at small industrial scale. The exposure assessment will again take into account both the occupational and consumer exposure as well as exposure to env...
Nanomaterials will improve the performance of many products in future but at the same time they exhi...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...
In 2016 Tappi International Conference on Nanotechnology for Renewable Materials we reported results...
Cellulose nanofibrils (CNFs) have shown potential as strengthening agents in polymer composites. In ...
Since some years, the unique properties of cellulose nanomaterials have been utilized in commercial ...
Cellulose nanofibrils (CNF) are promising biomaterials originating from renewable resources and bene...
Cellulose nanomaterials (CNs) are emerging advanced materials with many unique properties and growin...
Increased interest has been expressed towards bio-based nanomaterials, including cellulose nanofibri...
International audienceThis paper gives a first approach in risk analysis to identify the main exposu...
Background: The expanding production and application of cellulose nanofibrils (CNF) has increased th...
Cellulose is the most abundant polymer in the world, and cellulose nanomaterials thus present a sust...
Cellulose-based products are currently receiving tremendous attention from researchers all over the ...
Cellulose-based products are currently receiving tremendous attention from researchers all over the ...
This paper considers the EHS aspects of cellulose nanomaterials by reviewing the published literatur...
Nanomaterials will improve the performance of many products in future but at the same time they exhi...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...
In 2016 Tappi International Conference on Nanotechnology for Renewable Materials we reported results...
Cellulose nanofibrils (CNFs) have shown potential as strengthening agents in polymer composites. In ...
Since some years, the unique properties of cellulose nanomaterials have been utilized in commercial ...
Cellulose nanofibrils (CNF) are promising biomaterials originating from renewable resources and bene...
Cellulose nanomaterials (CNs) are emerging advanced materials with many unique properties and growin...
Increased interest has been expressed towards bio-based nanomaterials, including cellulose nanofibri...
International audienceThis paper gives a first approach in risk analysis to identify the main exposu...
Background: The expanding production and application of cellulose nanofibrils (CNF) has increased th...
Cellulose is the most abundant polymer in the world, and cellulose nanomaterials thus present a sust...
Cellulose-based products are currently receiving tremendous attention from researchers all over the ...
Cellulose-based products are currently receiving tremendous attention from researchers all over the ...
This paper considers the EHS aspects of cellulose nanomaterials by reviewing the published literatur...
Nanomaterials will improve the performance of many products in future but at the same time they exhi...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...
Cellulose nanomaterials have unique properties that make them potential for numerous applications. O...