ELECTRODIALYTIC LIQUID DESICCANT DEHUMIDIFYING SYSTEM
Air flows across an air-liquid interface such that liquid desiccant flowing through the interface absorbs water from the air and is thereby diluted to form an output stream. The output stream is circulated through an electrodialytic stack having a central ionic exchange membrane and first and second outer ionic exchange membranes. A redox shuttle loop circulates around the first and second outer ionic exchange membranes. A voltage is applied across the electrodialytic stack, which regenerates the liquid desiccant.
1 . A system, comprising:
an electrodialytic device comprising:
a salinate chamber through which a salinate stream flows;
a desalinate chamber separated from the salinate chamber by an ion-selective membrane, a desalinate stream flowing through the desalinate chamber; and
an anolyte chamber and a catholyte chamber on opposite outer sides of the salinate and desalinate chambers and separated therefrom by a first and second ionic exchange membrane, ion transport between the anolyte and catholyte chambers being driven by faradaic reactions induced by a voltage applied across the anolyte and catholyte chambers; and
a solvent exchange interface in contact with a first side with the salinate stream and in contact with a media flow on a second side, the solvent exchange interface moving a solvent from the media flow to the salinate stream.
2 . The system of claim 1 , wherein the media flow comprises a fluid.
3 . The system of claim 1 , wherein the media flow comprises a solid, a semi-solid, or a mixture of fluid and solid or semi solid.
4 . The system of claim 1 , wherein the faradaic reactions utilize a redox carrier stream that flows through the anolyte and the catholyte chamber.
5 . The system of claim 4 , wherein the redox carrier stream circulates from the anolyte chamber to the catholyte chamber and back again.