A performance analysis of a salinity gradient heat engine (SGP-HE) is presented for the conversion of low temperature heat into power via a closed-loop Reverse Electrodialysis (RED) coupled with Multi-Effect Distillation (MED). Mathematical models for the RED and MED systems have been purposely developed in order to investigate the performance of both processes and have been then coupled to analyze the efficiency of the overall integrated system. The influence of the main operating conditions (i.e., solutions concentration and velocity) has been quantified, looking at the power density and conversion efficiency of the RED unit, MED Specific Thermal Consumption (STC) and at the overall system exergy efficiency. Results show how the membrane ...
Energy is released when feed waters with different salinity mix. This energy can be captured in reve...
The combination of desalination technology (Electrodialysis) and power generation from salinity grad...
Reverse electrodialysis in closed loop configurations is a promising membrane technology in the ener...
A performance analysis of a salinity gradient heat engine (SGP-HE) is presented for the conversion o...
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...
This work presents a performance analysis of a waste-heat-to-power Reverse Electrodialysis Heat Engi...
Salinity gradient heat engines represent an innovative and promising way to convert low-grade heat i...
The coupling of Reverse Electrodialysis with Membrane Distillation is a promising option for the con...
The RED Heat Engine operates as a closed-loop RED system, where limited amounts of artificial saline...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
In the examined heat engine, reverse electrodialysis (RED) is used to generate electricity from the ...
Reverse Electrodialysis (SGP-RE or RED) process has been widely accepted as a viable and promising t...
Salinity Gradient Heat Engines (SG-HEs) have been proposed as a promising technology for converting ...
Reverse Electrodialysis (RED) has gained a strong interest among the salinity gradient energy techno...
Energy is released when feed waters with different salinity mix. This energy can be captured in reve...
The combination of desalination technology (Electrodialysis) and power generation from salinity grad...
Reverse electrodialysis in closed loop configurations is a promising membrane technology in the ener...
A performance analysis of a salinity gradient heat engine (SGP-HE) is presented for the conversion o...
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...
This work presents a performance analysis of a waste-heat-to-power Reverse Electrodialysis Heat Engi...
Salinity gradient heat engines represent an innovative and promising way to convert low-grade heat i...
The coupling of Reverse Electrodialysis with Membrane Distillation is a promising option for the con...
The RED Heat Engine operates as a closed-loop RED system, where limited amounts of artificial saline...
Reverse electrodialysis (RED) can harness the Gibbs free energy of mixing when fresh river water flo...
In the examined heat engine, reverse electrodialysis (RED) is used to generate electricity from the ...
Reverse Electrodialysis (SGP-RE or RED) process has been widely accepted as a viable and promising t...
Salinity Gradient Heat Engines (SG-HEs) have been proposed as a promising technology for converting ...
Reverse Electrodialysis (RED) has gained a strong interest among the salinity gradient energy techno...
Energy is released when feed waters with different salinity mix. This energy can be captured in reve...
The combination of desalination technology (Electrodialysis) and power generation from salinity grad...
Reverse electrodialysis in closed loop configurations is a promising membrane technology in the ener...