High-concentration brine mixing system for electrolysis process.

TH28510UActive Publication Date: 2026-07-14NATIONAL SCIENCE TECHNOLOGY DEVELOPMENT AGENCY +1
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Patent Information

Authority / Receiving Office
TH · TH
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2021-08-27
Publication Date
2026-07-14

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Abstract

OCR 09WP 01 / 04 / 2568 This invention relates to a high-concentration brine mixing system for an electrolysis process. together with The water treatment section receives water from outside into the system and then treats the water before sending it on. The brine mixture, which includes a water conditioning component, consists of a coarse filter, which filters out small particles. Large, with a carbon filter section which is the first stage of particulate filtration, and a resin filter section which is the final particulate filtration stage. The second, smaller stage, a reverse osmosis filter, which filters through the reverse osmosis process, a piping system which... Connect the various components and the pressure tank, which stores the conditioned water and delivers it to the spray nozzles. The brine mixture involves taking water that has been treated at the water conditioning facility and mixing it with salt. Inside the mixing chamber, which contains the brine mixture, is a solenoid valve. (valve) which controls the operation of the spray nozzle, the spray nozzle which sprays water to dissolve the salt, mixing chamber. These units are responsible for loading the salt and performing the mixing process, as well as brine storage tanks that store the produced brine for supplying to... Electrolysis
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Claims

OCR 09WP 01 / 04 / 2568 1. A high-concentration brine mixing system for the electrolysis process, characterized by its components: Water Treatment Section (201) receives water from outside into the system and then treats the water before sending it on to The brine mixture (202) which includes the water conditioner (201) consists of: - Coarse filter (101) which filters out large particles. - Carbon filter (102) which is the first stage particle filter. - Resin filter (103) which is a second-stage particle filter. - Reverse osmosis filter (104) which filters through the reverse osmosis process. - Piping system (105) which connects the various components and - Pressure tank (106) which stores the conditioned water and sends it to the spray nozzle (108). The brine mixture (202) receives the conditioned water from the water conditioner (201) to be mixed with Salt inside the mixing chamber (109), in which the brine mixture (202) consists of: - Solenoid valve (107) which is the part that controls the operation of the spray head. - Spray head (108) which sprays water to dissolve the salt. - Mixing room (109) which holds the salt and performs the mixing and - Brine storage tank (111) which stores the produced brine for feeding into the electrolysis section (203).

2. A high-concentration brine mixing system for the electrolysis process, as per claim 1, in which the conditioning component... The water (201) mentioned above, after water conditioning, will be filtered water with all inorganic and organic properties. The total dissolved solids (TDS) content should not exceed 20% to reduce corrosion of the electrolyte components. Lyce (203) 3. A high-concentration brine mixing system for the electrolysis process, as per claim 1 or 2, in which a tank... The pressure (106) is applied with a pressure greater than or equal to 35 psi (psi) to deliver water to the brine mixture (202). For use in dissolving salt.

4. A high-concentration brine mixing system for the electrolysis process, pursuant to any one of claims 1 through 3. Where the mixing room (109) is narrow and tall to hold the salt and is used for mixing, the height should be of a certain size. At least equal to the width or length of the mixing room (109) (referencing the longest side) by A height-to-width or length ratio greater than 1 (referencing the longest side).

5. A high-concentration brine mixing system for electrolysis processes, pursuant to any one of claims 1 through 4. Where the mixing chamber (109) has an overflow and drain holes to feed the resulting brine into a brine tank for feeding into Electrolysis section (203) 6. A high-concentration brine mixing system for electrolysis processes, pursuant to any one of claims 1 through 5. Where the spray head (108) is a cone-shaped nozzle with an angled spray pattern.