Composition for co2 gas separation membrane, co2 gas separation membrane and method for producing same, and co2 gas separation membrane module
US-2017232398-A1 · Aug 17, 2017 · US
US10765993B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10765993-B2 |
| Application number | US-201716498859-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 11, 2017 |
| Priority date | Mar 31, 2017 |
| Publication date | Sep 8, 2020 |
| Grant date | Sep 8, 2020 |
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The present invention provides a gel containing a crosslinked polymer having at least one selected from the group consisting of an acidic dissociative group, an acidic dissociative group in a salt form, and a derivative group of an acidic dissociative group, and a condensate of a compound represented by the following formula (I): Si{R1—N(R2)(R3)}(OR4)(OR5)(R6) (wherein each group is as defined in the DESCRIPTION).
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The invention claimed is: 1. A gel comprising a crosslinked polymer having at least one selected from the group consisting of an acidic dissociative group, an acidic dissociative group in a salt form, and a derivative group of an acidic dissociative group, and a condensate of a compound represented by the following formula (I): Si{R 1 —N(R 2 )(R 3 )}(OR 4 )(OR 5 )(R 6 ) (I) wherein R 1 is an alkylene group optionally having substituent(s), a cycloalkanediyl group optionally having substituent(s), an arenediyl group optionally having substituent(s), or a divalent group optionally having substituent(s) and being a combination of at least two selected from the group consisting of an alkylene group, a cycloalkanediyl group and an arenediyl group, and one or more —CH 2 — excluding —CH 2 — adjacent to Si and —CH 2 — adjacent to N in said alkylene group and cycloalkanediyl group is/are optionally replaced by at least one selected from the group consisting of —O— and —NR 7 — wherein R 7 is a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s) or an aralkyl group optionally having substituent(s), R 2 and R 3 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having substituent(s), or they are bonded to each other to form, together with the adjacent nitrogen atom, a basic nitrogen-containing heterocycle optionally having substituent(s), R 4 and R 5 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having substituent(s), and R 6 is an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), an aralkyl group optionally having substituent(s), a hydroxy group, an alkoxy group optionally having substituent(s), a cycloalkyloxy group optionally having substituent(s), an aryloxy group optionally having substituent(s), an aralkyloxy group optionally having substituent(s), or a group represented by —R′ 1 —N(R′ 2 )(R′ 3 ), wherein R′ 1 is an alkylene group optionally having substituent(s), a cycloalkanediyl group optionally having substituent(s), an arenediyl group optionally having substituent(s), or a divalent group optionally having substituent(s) and being a combination of at least two selected from the group consisting of an alkylene group, a cycloalkanediyl group and an arenediyl group, and one or more —CH 2 — excluding —CH 2 — adjacent to Si and —CH 2 — adjacent to N in said alkylene group and cycloalkanediyl group is/are optionally replaced by at least one selected from the group consisting of —O— and —NR′ 7 — wherein R′ 7 is a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s) or an aralkyl group optionally having substituent(s), and R′ 2 and R′ 3 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having substituent(s), or they are bonded to each other to form, together with the adjacent nitrogen atom, a basic nitrogen-containing heterocycle optionally having substituent(s). 2. The gel according to claim 1 , wherein R 1 is an alkylene group optionally having substituent(s), and one or more —CH 2 — excluding —CH 2 — adjacent to Si and —CH 2 — adjacent to N in said alkylene group is/are optionally replaced by —NR 7 — wherein R 7 is a hydrogen atom or an alkyl group optionally having substituent(s), R 2 and R 3 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having substituent(s), or they are bonded to each other to form, together with the adjacent nitrogen atom, a basic nitrogen-containing heterocycle optionally having substituent(s), R 4 and R 5 are each independently a hydrogen atom or an alkyl group, and R 6 is an alkyl group optionally having substituent(s), a hydroxy group or an alkoxy group. 3. The gel according to claim 1 , wherein the crosslinked polymer is an acrylic acid-based crosslinked polymer having at least one selected from the group consisting of a carboxy group, a carboxy group in a salt form, and a derivative group of a carboxy group. 4. The gel according to claim 1 , wherein the crosslinked polymer and the condensate of the compound represented by the formula (I) form an interpenetrating network. 5. The gel according to claim 1 , further comprising a noncrosslinked polymer comprising at least one selected from the group consisting of an acidic dissociative group, an acidic dissociative group in a salt form, and a derivative group of an acidic dissociative group. 6. The gel according to claim 1 , further comprising a basic compound. 7. An acidic gas separation membrane comprising the gel according to claim 1 . 8. The acidic gas separation membrane according to claim 7 , further comprising a porous membrane. 9. An acidic gas separation apparatus comprising the acidic gas separation membrane according to claim 7 . 10. A method for separating an acidic gas, comprising contacting a mixed gas comprising at least one kind of said acidic gas and at least one kind of nonacidic gas with the acidic gas separation membrane according to claim 7 . 11. A method for producing a gel comprising a crosslinked polymer having at least one selected from the group consisting of an acidic dissociative group, an acidic dissociative group in a salt form, and a derivative group of an acidic dissociative group, and a condensate of a compound represented by the following formula (I): Si{R 1 —N(R 2 )(R 3 )}(OR 4 )(OR 5 )(R 6 ) (I) wherein R 1 is an alkylene group optionally having substituent(s), a cycloalkanediyl group optionally having substituent(s), an arenediyl group optionally having substituent(s), or a divalent group optionally having substituent(s) and being a combination of at least two selected from the group consisting of an alkylene group, a cycloalkanediyl group and an arenediyl group, and one or more —CH 2 — excluding —CH 2 — adjacent to Si and —CH 2 — adjacent to N in said alkylene group and cycloalkanediyl group is/are optionally replaced by at least one selected from the group consisting of —O— and —NR 7 — wherein R 7 is a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s) or an aralkyl group optionally having substituent(s), R 2 and R 3 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having substituent(s), or they are bonded to each other to form, together with the adjacent nitrogen atom, a basic nitrogen-containing heterocycle optionally having substituent(s), R 4 and R 5 are each independently a hydrogen atom, an alkyl group optionally having substituent(s), a cycloalkyl group optionally having substituent(s), an aryl group optionally having substituent(s), or an aralkyl group optionally having subst
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