The design of a field-scale injection of engineered nanoparticle (NP) suspensions for the remediation of a polluted site requires the development of quantitative predictive models for the system design and implementation. In general, micro- and nanoparticle transport in porous media is controlled by particle-particle and particle-porous media interactions, which are in turn affected by flow velocity and pore water chemistry. During the injection, a strong perturbation of the flow field is induced around the well, and the particle transport is mainly controlled by the consequent sharp variation of pore-water velocity, and by the hydro-chemical properties of the injected fluid. Conversely, when the injection is stopped, the particles are tr...
Problem statement: Understanding the mechanisms that control the transport and fate of colloidal par...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
The escalating production and consumption of engineered nanomaterials (ENMs) may lead to their incre...
The design of a field-scale injection of engineered nanoparticle (NP) suspensions for the remediatio...
The application of NP transport to real cases, such as the design of a field-scale injection or the ...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
Recently, the use of engineered nanoparticles has been proposed for a variety of environmental appli...
Despite their great potential for technological applications, engineered nanoparticles (NPs) can rep...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
Transport and deposition of colloidal particles in saturated porous media are of great importance in...
Nanosized particles of several materials, such as TiO2, graphene, zero-valent iron, iron oxides, car...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Engineered nanoparticles (NPs) in the environment can act both as contaminants, when they are uninte...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Problem statement: Understanding the mechanisms that control the transport and fate of colloidal par...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
The escalating production and consumption of engineered nanomaterials (ENMs) may lead to their incre...
The design of a field-scale injection of engineered nanoparticle (NP) suspensions for the remediatio...
The application of NP transport to real cases, such as the design of a field-scale injection or the ...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
Recently, the use of engineered nanoparticles has been proposed for a variety of environmental appli...
Despite their great potential for technological applications, engineered nanoparticles (NPs) can rep...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
Transport and deposition of colloidal particles in saturated porous media are of great importance in...
Nanosized particles of several materials, such as TiO2, graphene, zero-valent iron, iron oxides, car...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Engineered nanoparticles (NPs) in the environment can act both as contaminants, when they are uninte...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Problem statement: Understanding the mechanisms that control the transport and fate of colloidal par...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
The escalating production and consumption of engineered nanomaterials (ENMs) may lead to their incre...