The colloidal transport and deposition are important phenomena involved in many engineering problems. In the environmental engineering field the use of micro- and nano-scale zerovalent iron (M-NZVI) is one of the most promising technologies for groundwater remediation. Colloid deposition is normally studied from a micro scale point of view and the results are then implemented in macro scale models that are used to design field-scale applications. The single collector efficiency concept predicts particles deposition onto a single grain of a complex porous medium in terms of probability that an approaching particle would be retained on the solid grain. In literature, many different approaches and equations exist to predict it, but most...
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 ...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
The colloidal transport and deposition are phenomena involved in different engineering problems. In ...
The colloidal transport and deposition are important phenomena involved in many engineering problems...
In this study a novel total flux normalized correlation equation is proposed for predicting single-c...
The transport and deposition of colloidal particles in porous media are important phenomena involved...
Defining the removal efficiency of a filter is a key aspect for colloid transport in porous media. S...
The single-collector contact efficiency (η<sub>0</sub>) for physicochemical colloid filtration under...
In the upscaling from pore to continuum (Darcy) scale, reaction and deposition phenomena at the soli...
The simulation of transport and deposition of colloidal particles in porous media finds important ap...
Transport and deposition of nanoparticles in porous media is a multi-scale problem governed by sever...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
In environmental engineering, the transport of colloidal suspensions in porous media is studied to u...
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 ...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
The colloidal transport and deposition are phenomena involved in different engineering problems. In ...
The colloidal transport and deposition are important phenomena involved in many engineering problems...
In this study a novel total flux normalized correlation equation is proposed for predicting single-c...
The transport and deposition of colloidal particles in porous media are important phenomena involved...
Defining the removal efficiency of a filter is a key aspect for colloid transport in porous media. S...
The single-collector contact efficiency (η<sub>0</sub>) for physicochemical colloid filtration under...
In the upscaling from pore to continuum (Darcy) scale, reaction and deposition phenomena at the soli...
The simulation of transport and deposition of colloidal particles in porous media finds important ap...
Transport and deposition of nanoparticles in porous media is a multi-scale problem governed by sever...
In the framework of groundwater remediation, the injection of nanoscale and microscale zerovalent ir...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
In environmental engineering, the transport of colloidal suspensions in porous media is studied to u...
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 ...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...