Direct in situ injection of palladium-doped nanosized zero valent iron (Pd-NZVI) particles can contribute to remediation of various environmental contaminants. A major challenge encountered is rapid aggregation of Pd-NZVI and hence very limited mobility. To reduce aggregation and concurrently improve particle mobility, the surface of bare Pd-NZVI can be modified with stabilizing surface modifiers. Selected surface-modified Pd-NZVI has shown dramatically improved stability and transport. However, little is known regarding the effects of aquifer grain geochemical heterogeneity on the transport and deposition behavior of surface-modified Pd-NZVI. Herein, the mobility of surface stabilized Pd-NZVI in two granular matrices representative of mode...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In this study, the relevance of straining of nano-sized particles of zero valent iron coated with ca...
In the context of groundwater remediation, an increasing interest was found towards nanoscale and mi...
This study examined the transport behavior of nano zero-valent iron (NZVI) coated with three types o...
Palladium-doped nanosized zerovalent iron (Pd-NZVI) particles can contribute to the transformation o...
In the field of pollution remediation, and in particular of aquifer systems decontamination, the use...
In the context of groundwater remediation, the use of zero-valent metals is known to be successful f...
The use of zero-valent iron nanoparticles (nZVI) has been advocated for the remediation of both soil...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
The aggregation of nanoscale zero-valent iron (nZVI) particles and their limited transport ability i...
Injection of nanoscale zero-valent iron (nZVI) has recently gained great interest as emerging techno...
In order to ensure adequate mobility of zerovalent iron nanoparticles in natural aquifers, the use o...
In the context of groundwater remediation, the use of zero-valent metals has been shown promising fo...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Mobility and stability of nano Zero Valent Iron (n-ZVI), in subsurface, for in-situ remediation of g...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In this study, the relevance of straining of nano-sized particles of zero valent iron coated with ca...
In the context of groundwater remediation, an increasing interest was found towards nanoscale and mi...
This study examined the transport behavior of nano zero-valent iron (NZVI) coated with three types o...
Palladium-doped nanosized zerovalent iron (Pd-NZVI) particles can contribute to the transformation o...
In the field of pollution remediation, and in particular of aquifer systems decontamination, the use...
In the context of groundwater remediation, the use of zero-valent metals is known to be successful f...
The use of zero-valent iron nanoparticles (nZVI) has been advocated for the remediation of both soil...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
The aggregation of nanoscale zero-valent iron (nZVI) particles and their limited transport ability i...
Injection of nanoscale zero-valent iron (nZVI) has recently gained great interest as emerging techno...
In order to ensure adequate mobility of zerovalent iron nanoparticles in natural aquifers, the use o...
In the context of groundwater remediation, the use of zero-valent metals has been shown promising fo...
Colloidal suspensions of engineered nanoparticles have been studied in recent years for waste water ...
Mobility and stability of nano Zero Valent Iron (n-ZVI), in subsurface, for in-situ remediation of g...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In this study, the relevance of straining of nano-sized particles of zero valent iron coated with ca...
In the context of groundwater remediation, an increasing interest was found towards nanoscale and mi...