Environmental behavior and ecotoxicity of engineered nanoparticles to algae, plants, and fungi
Developments in nanotechnology are leading to a rapid proliferation of new materials that
are likely to become a source of engineered nanoparticles (ENPs) to the environment,
where their possible ecotoxicological impacts remain unknown. The surface properties of
ENPs are of essential importance for their aggregation behavior, and thus for their mobility in
aquatic and terrestrial systems and for their interactions with algae, plants and, fungi.
Interactions of ENPs with natural organic matter have to be considered as well, as those will …
are likely to become a source of engineered nanoparticles (ENPs) to the environment,
where their possible ecotoxicological impacts remain unknown. The surface properties of
ENPs are of essential importance for their aggregation behavior, and thus for their mobility in
aquatic and terrestrial systems and for their interactions with algae, plants and, fungi.
Interactions of ENPs with natural organic matter have to be considered as well, as those will …
[PDF][PDF] Environmental behavior and ecotoxicity of engineered nanoparticles to algae, plants and fungi
Developments in nanotechnology are leading to a rapid proliferation of new materials that
are likely to become a source of engineered nanoparticles (ENPs) to the environment,
where their possible ecotoxicological impacts remain unknown. The surface properties of
ENPs are of essential importance for their aggregation behavior, and thus for their mobility in
aquatic and terrestrial systems and for their interactions with algae, plants and, fungi.
Interactions of
are likely to become a source of engineered nanoparticles (ENPs) to the environment,
where their possible ecotoxicological impacts remain unknown. The surface properties of
ENPs are of essential importance for their aggregation behavior, and thus for their mobility in
aquatic and terrestrial systems and for their interactions with algae, plants and, fungi.
Interactions of
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