Electrodialysis with bipolar membranes (EDBM) has drawn attention motivated by their application in gener- ating reagents from salts. Due to the water splitting (WS) occurring at the junction of the bipolar membranes (BPMs), where the anion and cation layers are in strict contact, H+ and OH- are released from the BPM producing acid and alkali on the respective compartment. Considering this application, the interest of this work is to provide further understanding of the mechanisms of WS and transport of species in EDBM. This work develops and utilizes, for the first time, an experimentally validated two-dimensional (2-D) computational model, in which the Navier-Stokes and Nernst-Planck equations are coupled with the description of WS given ...
Ion-exchange membranes have found many uses for their special separation capabilities and are used c...
<p>In this study, a mathematical model was proposed to illustrate the different transport modes cont...
Research on flow batteries based on water dissociation and acid-base neutralization reactions at bip...
Electrodialysis with bipolar membranes (EDBM) has drawn attention motivated by their application in ...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
A model is proposed that describes the transfer of ions and the process of water dissociation in a s...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
We present a set of analytical solutions to the problem of ion transport and field enhanced water di...
International audienceThe aim of this work is to model the two-compartment bipolar membrane electrod...
Electrodialysis (ED) is a membrane separation process in which ions are transferred through selectiv...
Bipolar membranes consist of a layered ion‐exchange structure composed of a cation selective membran...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
The behaviour of bipolar membranes in NaCl and Na2SO4 solutions is discussed. The membranes are char...
Bipolar membranes (BPMs), which have long seen usage in electrodialysis reactors for the generation ...
The rate of recombination of ions in a weak-electrolyte solution is often controlled by the rate at ...
Ion-exchange membranes have found many uses for their special separation capabilities and are used c...
<p>In this study, a mathematical model was proposed to illustrate the different transport modes cont...
Research on flow batteries based on water dissociation and acid-base neutralization reactions at bip...
Electrodialysis with bipolar membranes (EDBM) has drawn attention motivated by their application in ...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
A model is proposed that describes the transfer of ions and the process of water dissociation in a s...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
We present a set of analytical solutions to the problem of ion transport and field enhanced water di...
International audienceThe aim of this work is to model the two-compartment bipolar membrane electrod...
Electrodialysis (ED) is a membrane separation process in which ions are transferred through selectiv...
Bipolar membranes consist of a layered ion‐exchange structure composed of a cation selective membran...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
The behaviour of bipolar membranes in NaCl and Na2SO4 solutions is discussed. The membranes are char...
Bipolar membranes (BPMs), which have long seen usage in electrodialysis reactors for the generation ...
The rate of recombination of ions in a weak-electrolyte solution is often controlled by the rate at ...
Ion-exchange membranes have found many uses for their special separation capabilities and are used c...
<p>In this study, a mathematical model was proposed to illustrate the different transport modes cont...
Research on flow batteries based on water dissociation and acid-base neutralization reactions at bip...