Water ion adsorption device
Patent Information
- Authority / Receiving Office
- TH · TH
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2021-09-30
- Publication Date
- 2026-02-05
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Abstract
Claims
OCR 09WP 27 / 05 / 2568 1. An ion adsorption device in water, consisting of at least two sets of electrodes (11) connected together. A series, with each set consisting of: - At least one pair of current-carrying plates (1,5) with holes for water passage. - A layer of at least one pair of electrodes arranged between the pair of conductive plates (1, 5) by layer The pair of electrodes consists of: - A pair of electrode plates (2,4) to function as electrodes to separate ions. Get out of the water. - A porous conductive material layer (porous electrode) (200) located on the electrode plate (2,4) for Helps in the absorption of ions. - A gasket (3) placed between the pair of electrode plates (2,4) to create a space for Water passageway Its unique characteristic is the conductive porous material layer (200) of each electrode set (11), which is independent. Separated from, composed of a selection of carbon-based materials such as activated carbon or doped activated carbon. Nitrogen, graphene, graphene derivatives, carbon nanotubes, carbon aero. Carbon aerogel, carbon fiber, or spherical carbon.
2. Water ion adsorption device, according to claim 1, where the conductive porous material layer (200) has a thickness of The layer is in the range of 0.5 to 1,000 micrometers.
3. Water ion adsorption device according to claim 2, where the conductive porous material layer (200) has a thickness of The thickness ranges from 20 to 500 micrometers.
4. Water ion adsorption device, according to claim 1, where the conductive porous material layer (200) has the following components: It consists of a carbon-based material ranging from 50 to 98 percent by weight, and a binder in the range of... 1 to 12 percent by weight, conductive additives in the range of 1 to 38 percent by weight.
5. Ion adsorption device in water, according to claim 4, where the binder is selectable from carboxymethyl. Cellulose (carboxymethyl cellulose), polyvinylidene difluoride, polyvinylidene difluoride Litetrafluoroethylene (polytetrafluoroethylene), polyvinyl alcohol (polyvinyl alcohol), styrene Styrene butadiene rubber, either individually or in combination.
6. Ion adsorption device in water, pursuant to claim 4, where the conductive additive is selectable from graphite, Acetylene black, carbon black, either individually or in combination.
7. Water ion adsorption device in accordance with claim 1, where the electrode set (11) is additionally included. Conductive part (10) for connecting the conductive plates (1, 5) to the power supply (20).
8. Water ion adsorption device according to claim 7, where the conductive part (10) is in the shape of a spring.
9. Water ion adsorption device according to claim 1, where each electrode plate (2,4) has holes for It is a water inlet and outlet channel designed to allow water to flow in a directional direction from the bottom to the top. Zigzag to allow water to pass through the entire surface area of the electrode plates (2, 4).
10. Water ion adsorption device according to claim 1, where the pair of electrode plates (2,4) have a gap. In the range of 20 to 5,000 micrometers.