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Principles of reverse electrodialysis an

Nur Hidayati Othman, Nalan Kabay

2026enenergy harvestingintegrated systemion-exchange membranereverse electrodialysissalinity gradient power

Abstract

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This review article explores the principles of reverse electrodialysis (RED) and the development of integrated systems for power generation and water treatment. The objective is to highlight the potential of salinity gradient power (SGP) as a sustainable energy resource that exploits the chemical potential difference between solutions of varying salinities. A comprehensive methodology is employed to analyze existing literature on RED technology and its applications, particularly the use of ion-exchange membranes (IEMs) in enhancing energy efficiency. The findings reveal that SGP can provide a viable solution for renewable energy generation by effectively utilizing seawater and river water mixes. Moreover, the review discusses the challenges and opportunities associated with utilizing concentrated brine and saline wastewater, emphasizing the importance of developing efficient membranes to maximize energy output while minimizing environmental impact. Overall, the study underscores the promising future of RED technology in addressing global energy demands and provides insights for future research and innovation in this field.

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Cite This Work

@article{9729f33e-67d8-4cde-bc69-476cac1d870b,
  title={Principles of reverse electrodialysis an},
  author={Nur Hidayati Othman and Nalan Kabay},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Principles of reverse electrodialysis an
AU  - Nur Hidayati Othman
AU  - Nalan Kabay
PY  - 2026
LA  - en
ER  -

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