Aggregation and sedimentation are of significant importance to the safe applications of nanomaterials. In this study, aggregation and sedimentation of three homologous nanomaterials, titanium dioxide (TiO2), titanate nanotubes (TNs), and titanate nanotubes-TiO2 (TNs-TiO2) were systematically studied under various aqueous conditions. The influences of pH, ionic strength (Na+ and Ca2+) and natural organic matter (humic acid, HA) on aggregate size, zeta potential and sedimentation rate were totally investigated. It was found that maximum aggregation invariably occurred at pH close to point of zero charge. However, the three nanomaterials underwent different aggregation processes, even though aggregation was always greatly enhanced with increas...
Manufactured nanoparticles are now present in many daily use commercial products such as cosmetics, ...
Engineered nanoparticles released into the environment may interact with natural organic matter (NOM...
Various factors affect the sedimentation behavior of nanotitanium dioxide (n-TiO2) in water. Accordi...
The eventual future scenario of a release of nanomaterials into the environment makes it necessary t...
With the increasingly widespread use of titanium dioxide nanoparticles (TiO2 NPs), the particles' en...
With the increasingly widespread use of titanium dioxide nanoparticles (TiO2 NPs), the particles' en...
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...
The aggregation/sedimentation potentials of TiO2 nanoparticles were studied in mono- and binary syst...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Natural organic matter (NOM) has considerable influence on the aggregation and stability of titanium...
Nanoparticle morphology is expected to play a significant role in the stability, aggregation behavio...
One major concern in the fate of nanomaterials in aquatic systems is the lack of data on nanomateria...
The transport behavior of titanium dioxide nanoparticles (TiO2 NPs, 30 nm in diameter) was studied i...
Manufactured nanoparticles are now present in many daily use commercial products such as cosmetics, ...
Engineered nanoparticles released into the environment may interact with natural organic matter (NOM...
Various factors affect the sedimentation behavior of nanotitanium dioxide (n-TiO2) in water. Accordi...
The eventual future scenario of a release of nanomaterials into the environment makes it necessary t...
With the increasingly widespread use of titanium dioxide nanoparticles (TiO2 NPs), the particles' en...
With the increasingly widespread use of titanium dioxide nanoparticles (TiO2 NPs), the particles' en...
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...
The aggregation/sedimentation potentials of TiO2 nanoparticles were studied in mono- and binary syst...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Emerging nanomaterials are being manufactured with varying particle sizes, morphologies, and crystal...
Natural organic matter (NOM) has considerable influence on the aggregation and stability of titanium...
Nanoparticle morphology is expected to play a significant role in the stability, aggregation behavio...
One major concern in the fate of nanomaterials in aquatic systems is the lack of data on nanomateria...
The transport behavior of titanium dioxide nanoparticles (TiO2 NPs, 30 nm in diameter) was studied i...
Manufactured nanoparticles are now present in many daily use commercial products such as cosmetics, ...
Engineered nanoparticles released into the environment may interact with natural organic matter (NOM...
Various factors affect the sedimentation behavior of nanotitanium dioxide (n-TiO2) in water. Accordi...