Production method for ion exchange membrane for alkali chloride electrolysis, and production method for alkali chloride electrolysis apparatus
US-10385465-B2 · Aug 20, 2019 · US
US10781522B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10781522-B2 |
| Application number | US-201815909026-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 1, 2018 |
| Priority date | Sep 8, 2015 |
| Publication date | Sep 22, 2020 |
| Grant date | Sep 22, 2020 |
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To provide a production method whereby an ion exchange membrane for alkali chloride electrolysis can be obtained which has high current efficiency, little variation in current efficiency and high alkaline resistance. This is a method for producing an ion exchange membrane 1 having a layer (C) 12 containing a fluorinated polymer (A) having carboxylic acid type functional groups, by immersing an ion exchange membrane precursor film having a precursor layer (C′) containing a fluorinated polymer (A′) having groups convertible to carboxylic acid type functional groups, in an aqueous alkaline solution comprising an alkali metal hydroxide, a water-soluble organic solvent and water, and converting the groups convertible to carboxylic acid type functional groups to carboxylic acid functional groups, wherein the concentration of the water-soluble organic solvent is from 1 to 60 mass % in the aqueous alkaline solution (100 mass %); the temperature of the aqueous alkaline solution is at least 40° C. and less than 80° C.; and the proportion of structural units having carboxylic acid type functional groups in the fluorinated polymer (A) is from 13.0 to 14.50 mol % in all structural units (100 mol %) in the fluorinated polymer (A).
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What is claimed is: 1. A production method for an ion exchange membrane for alkali chloride electrolysis, which is a method for producing an ion exchange membrane for alkali chloride electrolysis having a layer containing a fluorinated polymer having carboxylic acid type functional groups, by immersing an ion exchange membrane precursor film having a precursor layer containing a fluorinated polymer having groups convertible to carboxylic acid type functional groups, in an alkaline aqueous solution containing an alkali metal hydroxide, a water-soluble organic solvent and water, and subjecting the groups convertible to carboxylic acid type functional groups to hydrolysis treatment to convert them to carboxylic acid type functional groups, and wherein the concentration of the water-soluble organic solvent is from 1 to 60 mass % in the alkaline aqueous solution as100 mass %, the temperature of the alkaline aqueous solution is from 40° C. -to less than 80° C., and the proportion of structural units having the carboxylic acid type functional groups in the fluorinated polymer having the carboxylic acid type functional groups, is from 13.10 to 14.50 mol %, in all structural units as 100 mol % in the fluorinated polymer having the carboxylic acid type functional groups. 2. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the concentration of the water-soluble organic solvent is from 5 to 50 mass % in the alkaline aqueous solution (100 mass %). 3. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the concentration of the alkali metal hydroxide is from 1 to 60 mass % in the alkaline aqueous solution as 100 mass %. 4. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the concentration of the alkali metal hydroxide is from 5 to 50 mass % in the alkaline aqueous solution as 100 mass %. 5. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the alkali metal hydroxide is sodium hydroxide or potassium hydroxide. 6. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the water-soluble organic solvent is at least one member selected from the group consisting of aprotic water-soluble organic solvents, alcohols and aminoalcohols. 7. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 6 , wherein the water-soluble organic solvent is at least one member selected from the group consisting of dimethyl sulfoxide, methyl alcohol, ethyl alcohol, propyl alcohol, 1-methoxy-2-propanol, triethanolamine, diethanolamine, isopropanolamine, triisopropanolamine, dimethylaminoethanol and diethylaminoethanol. 8. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , further having a layer containing a fluorinated polymer having sulfonic acid type functional groups, wherein the ion exchange membrane precursor film further has a precursor layer containing a fluorinated polymer having groups convertible to sulfonic acid type functional groups, the ion exchange membrane precursor film is immersed in the alkaline aqueous solution, and the groups convertible to carboxylic acid type functional groups are subjected to hydrolysis treatment and converted to carboxylic acid type functional groups, and at the same time, the groups convertible to sulfonic acid type functional groups are subjected to hydrolysis treatment and converted to sulfonic acid type functional groups. 9. The production method for an ion exchange membrane for alkali chloride electrolysis according to claim 1 , wherein the ion exchange membrane for alkali chloride electrolysis further has a layer comprising inorganic particles and a binder, on at least one outermost layer. 10. A production method for an alkali chloride electrolysis apparatus, which comprises mounting an ion exchange membrane for alkali chloride electrolysis obtained by the production method for an ion exchange membrane for alkali chloride electrolysis as defined in claim 1 , in an electrolytic cell comprising a cathode and an anode, so as to partition the inside of the electrolytic cell into a cathode chamber on the cathode side and an anode chamber on the anode side.
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