The injection of zero valent iron particles is a promising approach for the remediation of contaminated aquifer systems. In this framework microscale numerical simulations are a powerful tool to investigate transport and deposition of colloidal suspensions. The present analysis compare different porous media structures and highlights the role played by the geometry of the medium on the physics of the problem. Extrapolating macroscale parameters of interest in practical applications, results are compared with classical literature correlations, that are inadequate to describe the effect of a complex 3D structure
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
The aim of this work is to develop a numerical model able to describe the transport of highly concen...
The injection of zero valent iron particles is a promising approach for the remediation of contamina...
Micro and Nanoscale zerovalent iron (MZVI and NZVI) is one of the most promising reagent for the rem...
In the field of groundwater remediation, nano and microscale zerovalent iron (NZVI - MZVI) is one of...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Microscale iron particles (MZVI) have been recently studied for application in groundwater remediati...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
The aim of this work is to develop a numerical model able to describe the transport of highly concen...
The injection of zero valent iron particles is a promising approach for the remediation of contamina...
Micro and Nanoscale zerovalent iron (MZVI and NZVI) is one of the most promising reagent for the rem...
In the field of groundwater remediation, nano and microscale zerovalent iron (NZVI - MZVI) is one of...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Microscale iron particles (MZVI) have been recently studied for application in groundwater remediati...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Concentrated suspensions of microscale and nanoscale zerovalent iron particles (MZVI and NZVI) have ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Zero-valent iron micro- and nano-particles represent a promising technology for groundwater remediat...
The aim of this work is to develop a numerical model able to describe the transport of highly concen...