Related Experiment Video
Updated: Apr 21, 2026

Ion-Exchange Membranes for the Fabrication of Reverse Electrodialysis Device
Published on: July 20, 2021
Thermodynamic insights on desalination processes: exergy analysis, minimum separation work, and advances in
Ayoub Taktour1, Abderrahman Mellalou1, Abdelkader Outzourhit1
1College of Chemical Sciences and Engineering (CCSE), Department of Materials Science, Energy and Nano-engineering (MSN), Mohammed VI Polytechnic University (UM6P) 43150 Benguerir Morocco Fouad.ghamouss@um6p.ma Abderrahman.mellalou@um6p.ma.
None:
Desalination plays a crucial role in addressing freshwater scarcity resulting from the rising population, industrial expansion, and the impacts of climate change. It employs various technologies tailored to varying levels of salinity. While energy efficiency is a primary focus in desalination, its intuitive interpretation is challenging due to process variations. This viewpoint offers a thermodynamics-based understanding of energy consumption by examining it in terms of irreversible dissipation and minimal separation energy. This study examines the relationship between exergy variations across different desalination technologies, which provides insight into the minimum separation energy and serves as a basis for classifying desalination processes. Simultaneously, particular emphasis is placed on capacitive deionization (CDI) as an emerging desalination technology that requires only incremental advancements to overcome current limitations associated with high feed-water salinity and the restricted desalination capacity of conventional carbon-based electrodes. The integration of advanced battery materials, including sodium-ion and chloride-ion battery systems, with CDI represents a promising strategy to enhance deionization efficiency, thereby enabling the development of higher-performance desalination technologies.
More Related Videos
Related Concept Videos
Electrolysis
Osmosis and Osmotic Pressure of Solutions
The Debye–Hückel Theory of Electrolyte Solutions
Electrochemical Systems
Theory of Strong Electrolytes
The Electrical Double Layer

