International audienceThe purpose of this study was to determine and understand the aggregation behaviour of industrial nanoparticulate TiO2 (NPs) in the river water near a TiO2 production plant. The aggregation was tested in near-reality conditions with industrial NPs and the filtered river water in which they are potentially released. The initial size of TiO2 NPs is around 5 nm. The evolution of the hydrodynamic diameters of the TiO2 aggregates in the presence of added Suwannee River fulvic acid (SRFA) and illite in the filtered river water was measured at pH 8 for at least 30 min with dynamic light scattering and laser diffraction. The experiments performed in the filtered river water allowed the determination of the attachment efficienc...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
International audienceTo better understand and predict the fate of engineered nanoparticles in the w...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
© 2015 Elsevier Ltd. Titanium dioxide nanoparticles (TiO2 NPs) are currently one of the most prolifi...
The eventual future scenario of a release of nanomaterials into the environment makes it necessary t...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
International audienceTo better understand and predict the fate of engineered nanoparticles in the w...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe purpose of this study was to determine and understand the aggregation beha...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
International audienceThe fate of manufactured nanoparticles in natural aqueous environments is infl...
© 2015 Elsevier Ltd. Titanium dioxide nanoparticles (TiO2 NPs) are currently one of the most prolifi...
The eventual future scenario of a release of nanomaterials into the environment makes it necessary t...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
With the advancement of nanotechnology in today’s world, more products are incorporated with nanosca...
International audienceTo better understand and predict the fate of engineered nanoparticles in the w...