Systems and methods for water treatment
View Patent ↗Electrochemical devices and methods for water treatment are disclosed. An electrodeionization device ( 100 ) may include one or more compartments ( 110 ) containing an ionselective media, such as boron-selective resin ( 170 ). Cyclic adsorption of target ions and regeneration of the media in-situ is used to treat process water, and may be driven by the promotion of various pH conditions within the electrochemical device.
1. An electrically driven separation device, comprising:
a first compartment at least partially defined by a first cation selective membrane and a first anion selective membrane;
a second compartment at least partially defined by the first anion selective membrane and a second cation selective membrane;
a third compartment at least partially defined by the second cation selective membrane and by a bipolar membrane; and
borate-selective electroactive media located in at least one of the first and second compartments.
2. The device of claim 1 , wherein an outlet of the electrically driven separation device is fluidly connected to a potable point of use.
3. The device of claim 1 , wherein the electroactive media comprises cis-diol functional groups.
4. The device of claim 1 , wherein the third compartment is substantially free of electroactive media.
5. The device of claim 1 , wherein no reverse osmosis membrane is fluidly connected downstream of the electrically driven separation device.
6. The device of claim 1 , wherein no resin bed is fluidly connected downstream of the electrically driven separation device.
7. The device of claim 1 , further comprising a sensor positioned in fluid communication downstream of the resin bed and configured to provide a measurement signal representative of a concentration of boron in the treated water from the electrically driven separation device.
8. The device of claim 1 , further comprising a sensor positioned in fluid communication downstream of the resin bed and configured to provide a measurement signal representative of a detected pH level.
9. The device of claim 7 , further comprising a controller in communication with the sensor and configured to produce a control signal to a power supply associated with the electrically driven separation device based at least partially on the measurement signal.
10. The device of claim 3 , wherein the electroactive media comprises N-methyl glucamine functional groups.
11. The device of claim 1 , wherein at least one of the first compartment and the second compartment comprises a 50/50 blend of the borate-selective media and an anion exchange media.
12. An electrically driven separation device, comprising:
a first compartment at least partially defined by a first cation selective membrane and a first anion selective membrane;
a second compartment at least partially defined by the first anion selective membrane and a second cation selective membrane;
a third compartment at least partially defined by the second cation selective membrane; and
borate-selective electroactive media located in at least one of the first and second compartments,
the device comprising an outlet of the first compartment fluidly connected to an inlet of the third compartment.
13. The device of claim 12 , wherein at least one of the first compartment and the second compartment comprises a 50/50 blend of the borate-selective media and an anion exchange media.
14. The device of claim 12 , wherein an outlet of the electrically driven separation device is fluidly connected to a potable point of use.
15. The device of claim 12 , wherein the electroactive media comprises cis-diol functional groups.
16. The device of claim 12 , wherein the third compartment is substantially free of electroactive media.
17. The device of claim 12 , wherein no reverse osmosis membrane is fluidly connected downstream of the electrically driven separation device.
18. The device of claim 12 , wherein no resin bed is fluidly connected downstream of the electrically driven separation device.
19. The device of claim 12 , further comprising a sensor positioned in fluid communication downstream of the resin bed and configured to provide a measurement signal representative of a concentration of boron in the treated water from the electrically driven separation device.
20. The device of claim 12 , further comprising a sensor positioned in fluid communication downstream of the resin bed and configured to provide a measurement signal representative of a detected pH level.
21. The device of claim 19 , further comprising a controller in communication with the sensor and configured to produce a control signal to a power supply associated with the electrically driven separation device based at least partially on the measurement signal.
22. The device of claim 3 , wherein the electroactive media comprises N-methyl glucamine functional groups.