Composite Hydrophilic Membrane Electrode, Membrane Capacitor Cell, Preparation Method and use Thereof
US-2024312707-A1 · Sep 19, 2024 · US
US2023069167A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023069167-A1 |
| Application number | US-202017758058-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 22, 2020 |
| Priority date | Dec 27, 2019 |
| Publication date | Mar 2, 2023 |
| Grant date | — |
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Provided is a method for co-producing iodine and salt by use of underground brine containing iodine salt and sodium chloride. The method is a method to produce iodine and salt in parallel including a series of steps including: an iodine acquisition step; a collecting step for obtaining concentrated brine by simultaneously concentrating iodine salt and sodium chloride by using an electrodialysis device; and a roasting step for obtaining salt. The present invention encompasses various aspects in terms of the order of performing the iodine acquisition step, the collecting step, and the roasting step, which are included in the series of steps.
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1 . A method for co-producing iodine and salt, comprising: producing the iodine and salt in parallel using underground brine containing iodine salt and sodium chloride, wherein the method comprises a series of steps including an iodine acquisition step, a collecting step for obtaining simultaneously concentrating iodine salt and sodium chloride by using an electrodialysis device to obtain concentrated brine, and a roasting step for obtaining the salt. 2 . The method for co-producing iodine and salt according to claim 1 , wherein the underground brine contains 1 mg/L or more of iodine ions and 1 g/L or more of sodium chloride. 3 . The method for co-producing iodine and salt according to claim 1 , wherein the salt obtained in the roasting step is iodine-containing salt having an iodine ion content of 1 mg/kg or more. 4 . The method for co-producing iodine and salt according to claim 1 , wherein the concentrated brine from which transition metal ions have been removed is obtained by using a monovalent ion selective permeable cation exchange membrane in the electrodialysis device in the collecting step. 5 . The method for co-producing iodine and salt according to claim 1 , wherein an iodine ion concentration in the concentrated brine obtained by the electrodialysis device is four times or more an iodine ion concentration in the underground brine supplied to be treated in the collecting step. 6 . The method for co-producing iodine and salt according to claim 1 , wherein the collecting step, the roasting step, and the iodine acquisition step are carried out in this order in the series of steps. 7 . The method for co-producing iodine and salt according to claim 6 , wherein wastewater after the iodine acquisition step is recycled to the collecting step or the roasting step. 8 . The method for co-producing iodine and salt according to claim 1 , wherein the iodine acquisition step, the collecting step, and the roasting step are carried out in this order in the series of steps. 9 . The method for co-producing iodine and salt according to claim 8 , wherein wastewater after the roasting step is recycled to the iodine acquisition step. 10 . The method for co-producing iodine and salt according to claim 1 , wherein the collecting step, the iodine acquisition step, and the roasting step are carried out in this order in the series of steps. 11 . The method for co-producing iodine and salt according to claim 10 , wherein wastewater after the roasting step is recycled to the iodine acquisition step or the collecting step.
comprising the membrane sequence AC or CA, where C is a cation exchange membrane · CPC title
Ion-selective electrodialysis · CPC title
Table salts; Dietetic salt substitutes · CPC title
by solid ion-exchangers or solid chelating agents · CPC title
Food compositions, function of food ingredients or processes for food or foodstuffs · CPC title
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