IP Library › Granted Patent US 12,203,217
Granted Patent B2
US 12,203,217 · App. 18/705,700 · Granted Jan 21, 2025

Emulsion from the oxidation products of natural waxes, having improved barrier properties

Inventors: Milena Wundlechner (Mertingen, DE); Simon Bodendorfer (Augsburg, DE); Halil Can Aran (Munich, DE); Daniela True (Untermeitingen, DE)
Assignee: CLARIANT INTERNATIONAL LTD
D21H19/18
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Quick Facts
Patent No.
US 12,203,217
App. No.
18/705,700
Filed
Apr 29, 2024
Granted
Jan 21, 2025
Kind
B2
Art Unit
1748
USPC
162/136
Abstract

The invention relates to an emulsion from the oxidation products of natural waxes, having improved barrier properties, to a process of producing such an emulsion, and to cellulose fiber articles or biopolymers coated with such an emulsion from the oxidation products of natural waxes. The invention further relates to the use of such an emulsion for coating substrates that contain cellulose fibers or biopolymers.

Claims (22)

1. An aqueous natural wax oxidate emulsion for forming a water and/or water vapor barrier layer on a polysaccharide or biopolymer-containing substrate, comprising

(a) at least one natural wax oxidate having an acid number to hydroxide number ratio of greater than or equal to 1, wherein the natural wax oxidate has a hydroxyl number, measured to DGF M-IV KOH/g, of less than 8 mg KOH/g; and

(b) at least one anionic or nonionic emulsifier.

2. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate is preparable by an oxidation process selected from the group consisting of chromic acid oxidation, chromosulfuric acid oxidation (chromium trioxide and sulfuric acid), dichromate salt oxidation, thermal oxidation with atmospheric oxygen and electrochemical oxidation.

3. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate is selected from the group consisting of rice bran wax oxidate, corn wax oxidate, sugarcane wax oxidate, sunflower wax oxidate, and carnauba wax oxidate.

4. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate has an acid number between 1 and 140 mg KOH/g, as measured according to ISO 2114.

5. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate has an iodine color value, measured to DIN 6162, of less than 20.

6. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate has a dropping point between 65 and 110° C., as measured according to ISO 2176.

7. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the natural wax oxidate is present in the emulsion to an extent of 5% to 50% by weight, based on the total mass of the emulsion.

8. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the nonionic emulsifier has an HLB value between 11 and 19.

9. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the at least one nonionic emulsifier is selected from the group consisting of fatty alcohol polyglycol ether, alcohol ethoxylate, and tributylphenol ethoxylate.

10. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the emulsifier is an anionic emulsifier system.

11. The aqueous natural wax oxidate emulsion according to claim 1 , wherein the emulsifier is present in the emulsion to an extent of 1-20% by weight, based on the total mass of the emulsion.

12. A process for producing an aqueous natural wax oxidate emulsion according to claim 1 , comprising the steps of

a) providing a natural wax oxidate and an anionic or nonionic emulsifier;

b) emulsifying the natural wax oxidate with the aid of the emulsifier in water at a temperature above the melting point of the natural wax oxidate, wherein the natural wax oxidate has an acid number to hydroxyl number ratio of greater than or equal to 1, wherein the natural wax oxidate has a hydroxyl number, measured to DGFM-IV 6, or less than 8 mg KOH/g.

13. The process for producing an aqueous natural wax oxidate emulsion according to claim 12 , wherein the natural wax oxidate is producible by an oxidation method selected from the group consisting of chromic acid oxidation, chromosulfuric acid oxidation (chromium trioxide and sulfuric acid), dichromate salt oxidation, oxidation with atmospheric oxygen and electrochemical oxidation.

14. A polysaccharide- or biopolymer-containing substrate comprising a water vapor barrier layer formed from the aqueous natural wax oxidate emulsion according to claim 1 .

15. The polysaccharide- or biopolymer-containing substrate according to claim 14 , wherein the polysaccharide- or biopolymer-containing substrate is a cellulosic substrate.

16. A process for producing a polysaccharide- or biopolymer-containing substrate, comprising the steps of

a) applying the aqueous natural wax oxidate emulsion according to claim 1 to the surface of the polysaccharide- or biopolymer-containing substrate

b) drying the coated substrate to form the barrier layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2024
From: BODENDORFER, SIMON; WUNDLECHNER, MILENA; ARAN, HALIL CAN; TRUE, DANIELA
To: CLARIANT INTERNATIONAL LTD
Reel/Frame 067252/0875 →
Priority Claims (1)
EP 21209400 · Nov 19, 2021 · regional
Continuity (1)
Related Publication 20240328090A1 · Oct 3, 2024
References Cited (10)
US 4064149A · Rieger · 1977 [cited by examiner]
US 20070068642A1 · Borsinger · 2007 [cited by applicant]
US 20220235274A1 · Hayes · 2022 [cited by examiner]
DE 102014001709A1 · 2015 [cited by applicant]
EP 3808819A1 · 2021 [cited by applicant]
WO 2006137274A1 · 2006 [cited by applicant]
WO 2007061592A1 · 2007 [cited by applicant]
WO 2014060082A1 · 2014 [cited by applicant]
WO 2019204830A1 · 2019 [cited by applicant]
Goslinska, Monika, and Stefan Heinrich. “Characterization of waxes as possible coating material for organic aerogels.” Powder technology 357 (2019): 223-231. [cited by applicant]
Cited By (2)
US 12,692,394 US 12,735,844