ACS Symposium Series Vol. 1027Spherical silica particles containing nanoscale zero valent iron were synthesized through an aerosol assisted process. These particles are effective for groundwater remediation, with the environmentally benign silica particles serving as effective carriers for nanoiron transport. Incorporation of iron into porous submicron silica particles protects ferromagnetic iron nanoparticles from aggregation and may increase their subsurface mobility. Additionally, the presence of surface silanol groups on silica particles allows control of surface properties via silanol modification using organic functional groups. Aerosolized silica particles with functional alkyl moieties such as ethyl groups on the surface, clearly ad...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In the context of groundwater remediation, the use of zero-valent metals has been shown promising fo...
As global populations continue to increase, the pressure on water supplies will inevitably intensify...
Spherical silica particles containing nanoscale zerovalent iron were synthesized through an aerosol-...
Nanoscale iron particles are a preferred option for the reductive dehalogenation of trichloroethylen...
Effective in-situ remediation of contaminated groundwater plume requires the successful delivery of ...
Spherical iron-carbon nanocomposites were developed through a facile aerosol-based process with sucr...
Nanoscale zerovalent iron particles (NZVI) are a preferred option for reductive dehalogenation of de...
Through the accidental or improper release of chlorinated organic pollutants, numerous sites have be...
This project addresses the need for methods to remove or degrade subsurface contaminants that are pr...
Fe-based nanoparticles act as new generation environmental remediation technologies, and provide cos...
In the context of groundwater remediation, the use of zero-valent metals is known to be successful f...
The goals of this project have been to synthesize reactive metal colloids capable of: (1) reductivel...
In the field of pollution remediation, and in particular of aquifer systems decontamination, the use...
This work describes the design of surfactant formulations used to coat iron oxide nanoparticles and ...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In the context of groundwater remediation, the use of zero-valent metals has been shown promising fo...
As global populations continue to increase, the pressure on water supplies will inevitably intensify...
Spherical silica particles containing nanoscale zerovalent iron were synthesized through an aerosol-...
Nanoscale iron particles are a preferred option for the reductive dehalogenation of trichloroethylen...
Effective in-situ remediation of contaminated groundwater plume requires the successful delivery of ...
Spherical iron-carbon nanocomposites were developed through a facile aerosol-based process with sucr...
Nanoscale zerovalent iron particles (NZVI) are a preferred option for reductive dehalogenation of de...
Through the accidental or improper release of chlorinated organic pollutants, numerous sites have be...
This project addresses the need for methods to remove or degrade subsurface contaminants that are pr...
Fe-based nanoparticles act as new generation environmental remediation technologies, and provide cos...
In the context of groundwater remediation, the use of zero-valent metals is known to be successful f...
The goals of this project have been to synthesize reactive metal colloids capable of: (1) reductivel...
In the field of pollution remediation, and in particular of aquifer systems decontamination, the use...
This work describes the design of surfactant formulations used to coat iron oxide nanoparticles and ...
The application of nanoscale zero-valent iron (nZVI) for subsurface remediation of groundwater conta...
In the context of groundwater remediation, the use of zero-valent metals has been shown promising fo...
As global populations continue to increase, the pressure on water supplies will inevitably intensify...