Spherical iron-carbon nanocomposites were developed through a facile aerosol-based process with sucrose and iron chloride as starting materials. These composites exhibit multiple functionalities relevant to the in situ remediation of chlorinated hydrocarbons such as trichloroethylene (TCE). The distribution and immobilization of iron nanoparticles on the surface of carbon spheres prevents zerovalent nanoiron aggregation with maintenance of reactivity. The aerosol-based carbon microspheres allow adsorption of TCE, thus removing dissolved TCE rapidly and facilitating reaction by increasing the local concentration of TCE in the vicinity of iron nanoparticles. The strongly adsorptive property of the composites may also prevent release of any to...
Ferromagnetic carbon-coated Fe nanoparticles (core size of 15 nm, saturated magnetization of Ms = 21...
This study describes the preparation of Fe nanoparticle-dispersed carbon microfibers (Fe-ACFs) and c...
Nanoscaled zerovalent iron (ZVI) encapsulated in carbon spheres (nano-Fe0@CS) were prepared via a hy...
Nanoscale zerovalent iron particles (NZVI) are a preferred option for reductive dehalogenation of de...
ACS Symposium Series Vol. 1027Spherical silica particles containing nanoscale zero valent iron were ...
Effective in situ injection technology for the remediation of dense nonaqueous phase liquids (DNAPLs...
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...
A family of hybrid nanocarbon/nanoiron composites has been developed with the aim to carry out simul...
Iron carbide (Fe3C) is a ceramic magnetic material with high potential for applications in different...
Effective in-situ remediation of contaminated groundwater plume requires the successful delivery of ...
Carbon-encapsulated Fe-C (Fe-C@C) nanoparticles with a divergently flower-like morphology were succe...
Iron carbide (Fe₃C) is a ceramic magnetic material with high potential for applications in different...
This project addresses the need for methods to remove or degrade subsurface contaminants that are pr...
This manuscript describes the synthesis of magnetic composite adsorbents which consist of carbon mat...
Ferromagnetic carbon-coated Fe nanoparticles (core size of 15 nm, saturated magnetization of Ms = 21...
This study describes the preparation of Fe nanoparticle-dispersed carbon microfibers (Fe-ACFs) and c...
Nanoscaled zerovalent iron (ZVI) encapsulated in carbon spheres (nano-Fe0@CS) were prepared via a hy...
Nanoscale zerovalent iron particles (NZVI) are a preferred option for reductive dehalogenation of de...
ACS Symposium Series Vol. 1027Spherical silica particles containing nanoscale zero valent iron were ...
Effective in situ injection technology for the remediation of dense nonaqueous phase liquids (DNAPLs...
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...
A family of hybrid nanocarbon/nanoiron composites has been developed with the aim to carry out simul...
Iron carbide (Fe3C) is a ceramic magnetic material with high potential for applications in different...
Effective in-situ remediation of contaminated groundwater plume requires the successful delivery of ...
Carbon-encapsulated Fe-C (Fe-C@C) nanoparticles with a divergently flower-like morphology were succe...
Iron carbide (Fe₃C) is a ceramic magnetic material with high potential for applications in different...
This project addresses the need for methods to remove or degrade subsurface contaminants that are pr...
This manuscript describes the synthesis of magnetic composite adsorbents which consist of carbon mat...
Ferromagnetic carbon-coated Fe nanoparticles (core size of 15 nm, saturated magnetization of Ms = 21...
This study describes the preparation of Fe nanoparticle-dispersed carbon microfibers (Fe-ACFs) and c...
Nanoscaled zerovalent iron (ZVI) encapsulated in carbon spheres (nano-Fe0@CS) were prepared via a hy...