In the membrane processes, a trans-membrane pressure (TMP) may arise due to design features or operating conditions. In most applications, stacks for electrodialysis (ED) or reverse electrodialysis (RED) operate at low TMP (<0.1 bar); however, large stacks with non-parallel flow patterns and/or asymmetric configurations can exhibit higher TMP values, causing membrane deformations and changes in fluid dynamics and transport phenomena. In this work, integrated mechanical and fluid dynamics simulations were performed to investigate the TMP effects on deformation, flow and mass transfer for a profiled membrane-fluid channel system with geometrical and mechanical features and fluid velocities representative of ED/RED conditions. First, a cons...
Concentration polarization is one of the main challenges of membrane-based processes such as power g...
Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...
In the membrane processes, a trans-membrane pressure (TMP) may arise due to design features or opera...
In recent years, water and energy supply issues have boosted a noticeable interest in the scientific...
In recent years, water and energy supply issues have drawn the attention of the scientific community...
In electro-membrane processes, a pressure difference may arise between solutions flowing in alternat...
Electrodialysis (ED) is an electro-driven process that makes use of ion exchange membranes (IEMs) un...
The hydrodynamics of electrodialysis and reverse electrodialysis is commonly studied by neglecting m...
Reverse electrodialysis (RED) is an innovative electro-membrane technology for electric energy gener...
Membrane-based processes have gained a relevant role in many engineering applications. Much effort h...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
An unsteady forced slip velocity has an important effect on the flow conditions adjacent to a membra...
Experiments conducted on a commercial energy exchanger show that an applied pressure differential be...
In this research, the fluid-structure interaction in a recently developed membrane pump is analysed....
Concentration polarization is one of the main challenges of membrane-based processes such as power g...
Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...
In the membrane processes, a trans-membrane pressure (TMP) may arise due to design features or opera...
In recent years, water and energy supply issues have boosted a noticeable interest in the scientific...
In recent years, water and energy supply issues have drawn the attention of the scientific community...
In electro-membrane processes, a pressure difference may arise between solutions flowing in alternat...
Electrodialysis (ED) is an electro-driven process that makes use of ion exchange membranes (IEMs) un...
The hydrodynamics of electrodialysis and reverse electrodialysis is commonly studied by neglecting m...
Reverse electrodialysis (RED) is an innovative electro-membrane technology for electric energy gener...
Membrane-based processes have gained a relevant role in many engineering applications. Much effort h...
Electrodialysis (ED) is a membrane-based electrochemical process that remove ions from a solution. T...
An unsteady forced slip velocity has an important effect on the flow conditions adjacent to a membra...
Experiments conducted on a commercial energy exchanger show that an applied pressure differential be...
In this research, the fluid-structure interaction in a recently developed membrane pump is analysed....
Concentration polarization is one of the main challenges of membrane-based processes such as power g...
Reverse electrodialysis (RE) is a promising technology for electric power generation from controlled...
The resulting electrical potential of a reverse electrodialysis is reduced both due to ohmic and non...