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11. Practical Methodology for a Three-Dimensional-Printed Hybrid Desalination System.

12. An Opportunity for Synergizing Desalination by Membrane Distillation Assisted Reverse‐Electrodialysis for Water/Energy Recovery.

13. 海洋盐差能的"膜"届求职之旅.

14. Review on reverse electrodialysis process-a pioneering technology for energy generation by salinity gradient.

15. Engineering Electrode Rinse Solution Fluidics for Carbon-Based Reverse Electrodialysis Devices.

16. Graphene oxide‐based nanofluidic membranes for reverse electrodialysis that generate electricity from salinity gradients

17. Effect of external force on the dispersion of particles and permeability of substances via carbon nanotubes in reverse electrodialysis using molecular dynamics simulation

18. Editorial: Reviews in membrane modules and processes.

19. Green hydrogen production via reverse electrodialysis and assisted reverse electrodialysis electrolyser: Experimental analysis and preliminary economic assessment.

20. A Maxwell–Stefan Approach to Ion and Water Transport in a Reverse Electrodialysis Stack.

21. Improved Power Production in Reverse Electrodialysis Stacks with Ion‐Permselective Woven Net Spacers.

22. Review on reverse electrodialysis process-a pioneering technology for energy generation by salinity gradient

23. Simulation of a Reverse Electrodialysis–Absorption Refrigeration Integration System for the Efficient Recovery of Low-Grade Waste Heat

24. On a Specific Method for Characterizing Ion Exchange Membranes to Assess Their Functionality in Salinity Gradient Power Generation Through Reverse Electrodialysis, Including the Effect of Temperature

25. Practical Methodology for a Three-Dimensional-Printed Hybrid Desalination System

26. Scalability of nanopore osmotic energy conversion.

28. Experimental studies of electrical and mass transfer processes in reverse electrodialysis

29. Scalability of nanopore osmotic energy conversion

30. Nanomaterials‐Based Nanochannel Membrane for Osmotic Energy Harvesting.

31. Asymmetric Nanoporous Alumina Membranes for Nanofluidic Osmotic Energy Conversion.

32. Assessment of Data Capture Conditions Effect on Reverse Electrodialysis Process Using a DC Electronic Load.

33. Novel design of flow path spacers for reverse electrodialysis cell.

34. Salinity gradient power using in the Black Sea regions (in frame of the blue growth development)

35. Valorization of abandoned mine wastewater for the production of energy in a reverse electrodialysis cell

36. Sustainable power generation from salinity gradients by reverse electrodialysis: Influence of divalent ions.

37. Role of the temperature gradient in the power generation performance of reverse electrodialysis in conical nanochannels.

38. The Role of Membrane, Feed Characteristic and Process Parameters on RED Power Generation

39. LET EARTH BREATHE: A REVIEW ON THE POTENTIAL EFFECTS OF IMPLEMENTING THE USAGE OF SALINITY GRADIENT ENERGY TO ADDRESS CARBON EMISSIONS.

40. Optimization Study on Salinity Gradient Energy Capture from Brine and Dilute Brine.

41. Unveiling the adsorption mechanism of organic foulants on anion exchange membrane in reverse electrodialysis using electrochemical methods.

42. Environmentally-safe anion exchange membranes of PVA/PDDA/SiO2composite for reverse electrodialysis

43. Experimental study on the effects of salt solution pH on the performance of reverse electrodialysis stack.

44. Effect of channel roughness on the particle diffusion and permeability of carbon nanotubes in reverse electrodialysis process applying molecular dynamics simulation.

45. Surface-Modified Pore-Filled Anion-Exchange Membranes for Efficient Energy Harvesting via Reverse Electrodialysis

46. Salinity gradient power using in the Black Sea regions (in frame of the blue growth development).

47. The Role of Membrane, Feed Characteristic and Process Parameters on RED Power Generation.

48. An artificial neural network‐based optimization of reverse electrodialysis power generating cells using CFD and genetic algorithm.

49. Nanochannels and nanoporous membranes in reverse electrodialysis for harvesting osmotic energy.

50. Experimental investigation on the removal of phenol from simulated wastewater by reverse electrodialysis reactor.

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