This study covers the modification, (bio)fouling characterization, use, and cleaning of commercial heterogeneous anion exchange membranes (AEMs) to evaluate their feasibility for reverse electrodialysis (RED) applications. A surface modification with poly (acrylic) acid resulted in an improved monovalent perm-selectivity (decreased sulfate membrane transport rate). Moreover, we evaluated the (bio)fouling potential of the membrane using sodium dodecyl sulfate (SDS), sodium dodecyl benzenesulfonate (SDBS), and Aeromonas hydrophila as model organic foulants and a biofoulant, respectively. A detailed characterization of the AEMs (water contact angle, ion exchange capacity (IEC), scanning electron microscopy (SEM), cyclic voltammetry (CV), and F...
Electrodialysis (ED) was first established for water desalination and is still highly recommended in...
To achieve a cleaner production, textile wastewater with high organic and salt content can be treate...
Ion exchange membranes represent the main core of a number of separation processes such as electrodi...
Reverse electrodialysis (RED) technology represents a promising electro-membrane process for renewab...
Erasmus Mundus Master in Membrane Engineering for a Sustainable World (EM3E-4SW)Organic fouling phen...
The performance of anion-exchange membranes (AEMs) in Reverse Electrodialysis is hampered by both pr...
Reverse electrodialysis (RED) is a process to harvest renewable energy from salinity gradients. Unde...
In this study, two different types of ion exchange membranes are used to investigate the tendency of...
The membrane fouling in the course of electrodialysis (ED) is a serious problem during water treatme...
Fouling is a pressing issue for harvesting salinity gradient energy with reverse electrodialysis (RE...
Fouling is a pressing issue for harvesting salinity gradient energy with reverse electrodialysis (RE...
In the paper a homogeneous anion exchange membrane was modified by electrodeposition of the polyelec...
Renewable energy can be generated from mixing salt water and fresh water in reverse electrodialysis....
In this study, the fouling of anion exchange membrane (AEM) in electrodialysis was investigated usin...
Electrodialysis (ED) was first established for water desalination and is still highly recommended in...
To achieve a cleaner production, textile wastewater with high organic and salt content can be treate...
Ion exchange membranes represent the main core of a number of separation processes such as electrodi...
Reverse electrodialysis (RED) technology represents a promising electro-membrane process for renewab...
Erasmus Mundus Master in Membrane Engineering for a Sustainable World (EM3E-4SW)Organic fouling phen...
The performance of anion-exchange membranes (AEMs) in Reverse Electrodialysis is hampered by both pr...
Reverse electrodialysis (RED) is a process to harvest renewable energy from salinity gradients. Unde...
In this study, two different types of ion exchange membranes are used to investigate the tendency of...
The membrane fouling in the course of electrodialysis (ED) is a serious problem during water treatme...
Fouling is a pressing issue for harvesting salinity gradient energy with reverse electrodialysis (RE...
Fouling is a pressing issue for harvesting salinity gradient energy with reverse electrodialysis (RE...
In the paper a homogeneous anion exchange membrane was modified by electrodeposition of the polyelec...
Renewable energy can be generated from mixing salt water and fresh water in reverse electrodialysis....
In this study, the fouling of anion exchange membrane (AEM) in electrodialysis was investigated usin...
Electrodialysis (ED) was first established for water desalination and is still highly recommended in...
To achieve a cleaner production, textile wastewater with high organic and salt content can be treate...
Ion exchange membranes represent the main core of a number of separation processes such as electrodi...