Reverse electrodialysis in closed loop configurations is a promising membrane technology in the energy conversion and storage fields. One of the main advantages of closed-loop reverse electrodialysis is the possibility of using a wide range of operating concentrations, flow rates and different salts for generating the salinity gradient. In this work, an original exergy analysis of the reverse electrodialysis process was carried out in order to investigate reverse electrodialysis performance in terms of energetic and exergetic efficiency parameters in a wide range of operating conditions. A mono-dimensional model of the reverse electrodialysis process was developed, in which all sources of irreversibility are considered, such as non-ideal me...
Salinity gradient energy is a sustainable, renewable, and clean energy source. When waters with diff...
Reverse electrodialysis (RED) is an electrochemical membrane process that converts the salinity grad...
The use of concentrated brines and brackish water as feed solutions in reverse electrodialysis repre...
Reverse electrodialysis in closed loop configurations is a promising membrane technology in the ener...
Salinity Gradient Power Heat Engines (SGP-HEs) represent a novel technology to convert low grade was...
The increasing worldwide energy demand is rising the interest on alternative power production techno...
In this study, stack design for high concentration gradient reverse electrodialysis operating in rec...
The increasing worldwide energy demand is rising the interest on alternative power production techno...
The increasing freshwater demand is pushing the development and adoption of desalination technologie...
Renewable energy can be captured from the mixing of salt and fresh water in reverse electrodialysis....
Salinity gradient heat engines represent an innovative and promising way to convert low-grade heat i...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
Salinity gradient energy is a sustainable, renewable, and clean energy source. When waters with diff...
This work presents a performance analysis of a waste-heat-to-power Reverse Electrodialysis Heat Engi...
Salinity gradient energy is a sustainable, renewable, and clean energy source. When waters with diff...
Reverse electrodialysis (RED) is an electrochemical membrane process that converts the salinity grad...
The use of concentrated brines and brackish water as feed solutions in reverse electrodialysis repre...
Reverse electrodialysis in closed loop configurations is a promising membrane technology in the ener...
Salinity Gradient Power Heat Engines (SGP-HEs) represent a novel technology to convert low grade was...
The increasing worldwide energy demand is rising the interest on alternative power production techno...
In this study, stack design for high concentration gradient reverse electrodialysis operating in rec...
The increasing worldwide energy demand is rising the interest on alternative power production techno...
The increasing freshwater demand is pushing the development and adoption of desalination technologie...
Renewable energy can be captured from the mixing of salt and fresh water in reverse electrodialysis....
Salinity gradient heat engines represent an innovative and promising way to convert low-grade heat i...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
Salinity gradient energy is a sustainable, renewable, and clean energy source. When waters with diff...
This work presents a performance analysis of a waste-heat-to-power Reverse Electrodialysis Heat Engi...
Salinity gradient energy is a sustainable, renewable, and clean energy source. When waters with diff...
Reverse electrodialysis (RED) is an electrochemical membrane process that converts the salinity grad...
The use of concentrated brines and brackish water as feed solutions in reverse electrodialysis repre...