Molded article comprising polysaccharide
US-2020062931-A1 · Feb 27, 2020 · US
US11118312B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11118312-B2 |
| Application number | US-201615572257-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 19, 2016 |
| Priority date | Jun 1, 2015 |
| Publication date | Sep 14, 2021 |
| Grant date | Sep 14, 2021 |
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Disclosed herein are poly alpha-1,3-glucan fibrids and methods for making them. The fibrids have a fibrous shape with an average length of between 10 μm and 10 mm and width of between 200 nm and 200 μm. Also disclosed are uses for the fibrids, including paper-making and as a viscosity modifier in making formulations for applications such as laundry applications and personal care applications, and as an emulsifier in food.
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What is claimed is: 1. Fibrids comprising poly alpha-1,3-glucan or surface charge-modified poly alpha-1,3-glucan. 2. The fibrids of claim 1 , wherein the fibrids have a fibrous shape with an average length of between 100 nm and 10 mm and width of between 10 nm and 200 μm. 3. A paper comprising: (a) the fibrids of claim 1 ; and (b) optionally, wood pulp. 4. The paper of claim 3 , wherein the paper is in the form of a packaging material or an insulating material. 5. A process for making a paper, said method comprising: (a) dispersing the fibrids of claim 1 , optionally with wood pulp, in an aqueous medium to form a slurry; and (b) forming a paper from the slurry by filtering off the aqueous medium to form a wet paper and then drying the wet paper. 6. The process of claim 5 , further comprising: (c) calendering the paper. 7. A viscosity modifier comprising the fibrids of claim 1 . 8. An emulsifier comprising the fibrids of claim 1 . 9. The fibrids of claim 1 , wherein the fibrids comprise the poly alpha-1,3-glucan. 10. The fibrids of claim 1 , wherein the fibrids comprise the surface charge-modified poly alpha-1,3-glucan. 11. The fibrids of claim 10 , wherein the surface charge-modified poly alpha-1,3-glucan has a positive surface charge. 12. The fibrids of claim 11 , wherein the surface charge-modified poly alpha-1,3-glucan is obtained by reaction of 3-chloro-2-hydroxypropyl-trimethylammonium chloride with poly alpha-1,3-glucan. 13. The fibrids of claim 10 , wherein the surface charge-modified poly alpha-1,3-glucan has a zeta potential that is higher than the zeta potential of unmodified poly alpha-1,3-glucan. 14. The fibrids of claim 1 , wherein the fibrids are comprised in an emulsifier or a viscosity modifier. 15. The fibrids of claim 1 , wherein at least 50% of the glycosidic linkages of the poly alpha-1,3-glucan and the surface charge-modified poly alpha-1,3-glucan are alpha-1,3-glycosidic linkages. 16. The fibrids of claim 15 , wherein at least 90% of the glycosidic linkages of the poly alpha-1,3-glucan and the surface charge-modified poly alpha-1,3-glucan are alpha-1,3-glycosidic linkages. 17. A process for making fibrids, said method comprising precipitating poly alpha-1,3-glucan or surface charge-modified poly alpha-1,3-glucan under shear in a non-solvent to produce a suspension comprising fibrids. 18. The process of claim 17 , wherein at least one of (i) viscosity of the suspension containing the fibrids, (ii) size of the fibrids, or (iii) shape of the fibrids is controlled by altering at least one process parameter wherein the process parameter is the dope concentration, the type of mixer, the mixing speed, the pH of precipitation bath, the rate of addition of solvent in which the glucan is dissolved, the amount of non-solvent used, the duration of mixing, the rate of neutralization, and/or the concentration of neutralizer. 19. A process for making fibrids, said method comprising: (a) dissolving poly alpha-1,3-glucan or surface charge-modified poly alpha-1,3-glucan in a solvent to make a glucan solution; (b) precipitating poly alpha-1,3-glucan or surface charge-modified poly alpha-1,3-glucan under shear to produce a suspension containing the fibrids. 20. The process of claim 19 , wherein the fibrid-containing suspension of step (b) is filtered to isolate the fibrids. 21. The process of claim 20 , wherein the isolated fibrids are dried. 22. The process of claim 19 , wherein the process includes at least one of the following: (i) the solvent can be an aqueous basic solution; and (ii) the precipitation of (b) comprises at least one of an aqueous acidic solution and/or an alcohol. 23. A process for making surface charge-modified poly alpha-1,3-glucan fibrids, said method comprising: (a) contacting poly alpha-1,3-glucan with 3-chloro-2-hydroxypropyl trimethylammonium chloride to obtain surface charge-modified poly alpha-1,3-glucan; and (b) precipitating the surface charge-modified poly alpha-1,3-glucan under shear in a non-solvent to produce a suspension comprising surface charge-modified poly alpha-1,3-glucan fibrids.
alpha-D-Glucans, e.g. polydextrose, alternan, glycogen; (alpha-1,4)(alpha-1,6)-D-Glucans; (alpha-1,3)(alpha-1,4)-D-Glucans, e.g. isolichenan or nigeran; (alpha-1,4)-D-Glucans; (alpha-1,3)-D-Glucans, e.g. pseudonigeran; Derivatives thereof · CPC title
from macromolecular compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds · CPC title
wood; paper; press board · CPC title
Packing paper (packaging materials of special type or form B65D65/38) · CPC title
Compositions of polysaccharides or of their derivatives not provided for in groups C08L1/00 or C08L3/00 · CPC title
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