IP Library Granted Patent US 11,919,974
Granted Patent B2
US 11,919,974 · App. 17/265,035 · Granted Mar 5, 2024

Oxidized cellulose, method of producing oxidized cellulose and nanocellulose, and nanocellulose dispersion

Inventors: Daisuke Kamiya (Tokyo, JP); Shiroshi Matsuki (Nagoya, JP); Jun Takada (Nagoya, JP)
Assignee: TOAGOSEI CO., LTD.
C08B15/04
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Quick Facts
Patent No.
US 11,919,974
App. No.
17/265,035
Granted
Mar 5, 2024
Kind
B2
Abstract

Provided is an oxidized cellulose, a 13 C solid-state NMR spectrum of the oxidized cellulose including a number of peaks in a range of from 165 ppm to 185 ppm, which can be produced by oxidizing a cellulose raw material with a hypochlorous acid or salt thereof having an available chlorine concentration of from 6% by mass to 14% by mass, while adjusting the pH in a range of from 5.0 to 14.0.

Claims (15)

1. An oxidized cellulose, a 13 C solid-state NMR spectrum of the oxidized cellulose comprising a plurality of peaks in a range of from 165 ppm to 185 ppm, wherein a content of carboxyl groups in the oxidized cellulose is from 0.55 mmol/g to 3.0 mmol/g with respect to a dry mass of the oxidized cellulose, wherein the oxidized cellulose is not an oxidized regenerated cellulose; and

wherein the oxidized cellulose is produced by a process comprising:

oxidizing a cellulose raw material with a solution prepared from a hypochlorous acid or salt thereof having an available chlorine concentration of from 7% by mass to 14% by mass, while adjusting the pH in a range of from 5.0 to 14.0, wherein the cellulose raw material is not a regenerated cellulose.

2. A method of producing a nanocellulose, the method comprising fibrillating and nanoizing the oxidized cellulose according to claim 1 .

3. A nanocellulose dispersion, comprising the nanocellulose produced by the method according to claim 2 dispersed in at least one selected from the group consisting of water, acetonitrile, and a carbonate ester.

4. The oxidized cellulose according to claim 1 , wherein the content of carboxyl groups in the oxidized cellulose is from 0.55 mmol/g to 0.96 mmol/g.

5. An oxidized cellulose, not containing an N-oxyl compound, a 13 C solid-state NMR spectrum of the oxidized cellulose comprising a plurality of peaks in a range of from 165 ppm to 185 ppm, wherein a content of carboxyl groups in the oxidized cellulose is from 0.55 mmol/g to 3.0 mmol/g with respect to a dry mass of the oxidized cellulose, wherein the oxidized cellulose is not an oxidized regenerated cellulose; and

wherein the oxidized cellulose is produced by a process comprising:

oxidizing a cellulose raw material with a solution prepared from a hypochlorous acid or salt thereof having an available chlorine concentration of from 7% by mass to 14% by mass, while adjusting the pH in a range of from 5.0 to 14.0, wherein the cellulose raw material is not a regenerated cellulose.

6. A method of producing an oxidized cellulose, the method comprising:

oxidizing a cellulose raw material with a solution prepared from a hypochlorous acid or salt thereof having an available chlorine concentration of from 7% by mass to 14% by mass, while adjusting the pH in a range of from 5.0 to 14.0, wherein the cellulose raw material is not a regenerated cellulose;

wherein the oxidized cellulose is not an oxidized regenerated cellulose.

7. The method of producing an oxidized cellulose according to claim 6 , wherein the hypochlorous acid or salt thereof is sodium hypochlorite.

8. The method of producing an oxidized cellulose according to claim 6 , wherein the cellulose raw material is oxidized while adjusting the pH in a range of from 7.0 to 14.0.

9. The method of producing an oxidized cellulose according to claim 6 , wherein the hypochlorous acid or salt thereof has an available chlorine concentration of from 8% by mass to 14% by mass.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2021
From: KAMIYA, DAISUKE; MATSUKI, SHIROSHI; TAKADA, JUN
To: TOAGOSEI CO., LTD.
Reel/Frame 055098/0681 →
Priority Claims (1)
JP 2018-146352 · Aug 3, 2018 · national
Continuity (1)
Related Publication 20210301034A1 · Sep 30, 2021