In this study, a model assisted strategy is developed to control the distribution of colloids in porous media in the framework of nanoremediation, an innovative environmental nanotechnology aimed at reclaiming contaminated aquifers. This approach is exemplified by the delivery of humic acid-stabilized iron oxide nanoparticles (FeOx), a typical reagent for in situ immobilization of heavy metals. By tuned sequential injections of FeOx suspensions and of solutions containing a destabilizing agent (i.e. calcium or magnesium), the two fronts, which advance at different rates, overlap at the target location (i.e., the central portion) of the porous systems. Here, the particles deposit and accumulate irreversibly, creating a reactive zone. An anal...
Nanosized colloids of iron oxide adsorb heavy metals, enhance the biodegradation of contaminants, an...
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...
In this study, a model assisted strategy is developed to control the distribution of colloids in por...
Abstract: In this study, a model assisted strategy is developed to control the distribution of coll...
Abstract In this study, a model assisted strategy is developed to control the distribution of colloi...
Permeable reactive barriers have been recognized as a cost-effective technology for in-situ groundwa...
Permeable reactive barriers have been recognized as a cost-effective technology for in-situ groundwa...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Recently, the use of engineered nanoparticles has been proposed for a variety of environmental appli...
Nanosized colloids of iron oxide enhance the subsurface microbial degradation of a wide range of org...
Nanosized colloids of iron oxide adsorb heavy metals, enhance the biodegradation of contaminants, an...
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...
In this study, a model assisted strategy is developed to control the distribution of colloids in por...
Abstract: In this study, a model assisted strategy is developed to control the distribution of coll...
Abstract In this study, a model assisted strategy is developed to control the distribution of colloi...
Permeable reactive barriers have been recognized as a cost-effective technology for in-situ groundwa...
Permeable reactive barriers have been recognized as a cost-effective technology for in-situ groundwa...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
The understanding of fate and transport of nanoparticles (NPs) in groundwater has become a significa...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Natural and anthropogenic nanoparticles are widely spread into the environment, and in particular in...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Recently, the use of engineered nanoparticles has been proposed for a variety of environmental appli...
Nanosized colloids of iron oxide enhance the subsurface microbial degradation of a wide range of org...
Nanosized colloids of iron oxide adsorb heavy metals, enhance the biodegradation of contaminants, an...
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...