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Journal Article
Journal of membrane science, ISSN 0376-7388, 2013, Volume 446, pp. 266 - 276
Journal Article
Desalination, ISSN 0011-9164, 02/2017, Volume 404, pp. 138 - 146
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 12/2016, Volume 520, pp. 499 - 506
Reverse Electrodialysis is today recognized as one of the most promising technology to harvest Salinity Gradient Power (SGP-RE... 
Multi-ion solutions | Reverse Electrodialysis | Electrochemical Impedance Spectroscopy | Salinity Gradient Power | RIVER WATER | POLYMER SCIENCE | MEMBRANE | BRINES | SEAWATER | PERMSELECTIVITY | SEA | ENGINEERING, CHEMICAL | TRANSPORT
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 2017, Volume 544, pp. 397 - 405
Reverse electrodialysis (RED) as an emerging technology to generate electric power through two different salinity solutions, has deserved full attention in the past decade... 
Salinity power | Hydrogen energy | Reverse Electro-Electrodialysis | INTERMEMBRANE DISTANCE | POLYMER SCIENCE | WATER ELECTROLYSIS | FRESH-WATER | SALINITY-GRADIENT POWER | SEA-WATER | DENSITY | SALT | ENGINEERING, CHEMICAL | PRESSURE-RETARDED OSMOSIS | ENERGY RECOVERY | GENERATION | Hydrochloric acid | Hydroxides | Electric power production | Hydrogen | Analysis | Salinity | Hydrogen as fuel
Journal Article
Journal of membrane science, ISSN 0376-7388, 2018, Volume 561, pp. 1 - 9
Nanofluidic reverse electrodialysis (RED) is a promising way to utilize the vastly existed salinity gradient energy... 
Reverse electrodialysis | Nanopore | Temperature gradient | SYSTEM | POLYMER SCIENCE | ION-TRANSPORT | MEMBRANE | BEHAVIOR | NANOCHANNEL | ENGINEERING, CHEMICAL | CONCENTRATION-GRADIENT | ENERGY-CONVERSION | GENERATION | Electric power production | Salinity
Journal Article
Journal of applied electrochemistry, ISSN 1572-8838, 2010, Volume 40, Issue 8, pp. 1461 - 1474
Journal Article
Desalination, ISSN 0011-9164, 12/2017, Volume 423, pp. 52 - 64
Reverse electrodialysis (RED) is an electrochemical membrane process that directly converts the energy associated with the concentration difference between two salt solutions into electrical energy by means of a selective controlled mixing... 
Multi-physical model | Finite element method | Power density | Profiled membranes | Reverse electrodialysis | POWER-DENSITY | RIVER WATER | ELECTRICAL-POWER | CFD PREDICTION | WATER RESOURCES | ENERGY GENERATION | PRESSURE-DROP | ENGINEERING, CHEMICAL | DIFFUSION BOUNDARY-LAYER | SPACER-FILLED CHANNELS | SALINITY GRADIENTS | Fluid dynamics | Analysis | Numerical analysis
Journal Article
Applied Energy, ISSN 0306-2619, 11/2017, Volume 206, pp. 1334 - 1353
...: Osmotic Heat Engine; REDHE, Reverse Electrodialysis Heat Engine (this paper). [Display omitted] •For the first time, the potential of Reverse Electrodialysis Heat Engine is assessed... 
Power production cycle | Closed loop | Thermolytic salts | Modelling | Heat engine | Reverse electrodialysis | ENERGY & FUELS | THERMODYNAMIC ANALYSIS | LOW-GRADE HEAT | CFD PREDICTION | CONCENTRATED BRINES | ENERGY GENERATION | SALINITY-GRADIENT POWER | ENGINEERING, CHEMICAL | PRESSURE-RETARDED OSMOSIS | AMMONIA-CARBON DIOXIDE | SPACER-FILLED CHANNELS | WASTE-HEAT
Journal Article