Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled mixing of two differently concentrated salt solutions, where ion-exchange membranes are adopted for the generation of ionic currents within the system. Channel geometry strongly influences fluid flow and thus crucial phenomena such as pressure drop and concentration polarization. Profiled membranes are an alternative to the more commonly adopted net spacers and offer a number of advantages: avoiding the use of non-conductive and relatively expensive materials, reducing hydraulic losses and increasing the active membrane area. In this work, Computational Fluid Dynamic simulations were performed to predict the fluid flow and mass transfer beha...
Salinity Gradient Power via Reverse Electrodialysis is a topic of primary importance nowadays. It al...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...
Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled...
Abstract: Reverse electrodialysis (RE) is a promising technology for electric power generation from ...
Abstract: Reverse electrodialysis (RE) is a promising technology for electric power generation from ...
Reverse electrodialysis (RE) is a promising technology for electric power generation by converting t...
Reverse electrodialysis (RE) is a promising technology for electric power generation by converting t...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
Salinity gradient between two solutions is a renewable source of energy. Among the technologies able...
In this work, carried out within the EU-FP7 funded REAPower project, CFD simulations were...
Salinity Gradient Power via Reverse Electrodialysis is a topic of primary importance nowadays. It al...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
Salinity Gradient Power via Reverse Electrodialysis is a topic of primary importance nowadays. It al...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...
Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled...
Abstract: Reverse electrodialysis (RE) is a promising technology for electric power generation from ...
Abstract: Reverse electrodialysis (RE) is a promising technology for electric power generation from ...
Reverse electrodialysis (RE) is a promising technology for electric power generation by converting t...
Reverse electrodialysis (RE) is a promising technology for electric power generation by converting t...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
Salinity gradient between two solutions is a renewable source of energy. Among the technologies able...
In this work, carried out within the EU-FP7 funded REAPower project, CFD simulations were...
Salinity Gradient Power via Reverse Electrodialysis is a topic of primary importance nowadays. It al...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
Salinity Gradient Power via Reverse Electrodialysis is a topic of primary importance nowadays. It al...
Reverse ElectroDialysis (RED) is a very promising technology allowing the electrochemical potential ...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...