IP Library › Granted Patent US 9,982,220
Granted Patent B2
US 9,982,220 · App. 15/157,124 · Granted May 29, 2018

Efficient surfactant system on plastic and all types of ware

Inventors: Janel Marie Kieffer (Hastings, MN); Terrence P. Everson (Eagan, MN); James S. Dailey (Grosse Ile, MI); Thomas Gessner (Ypisilanti, MI); Juergen Tropsch (Roemerberg, DE)
Assignees: Ecolab USA Inc.; BASF SE
C11D1/825A47L15/0007C11D1/72C11D1/79
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Quick Facts
Patent No.
US 9,982,220
App. No.
15/157,124
Granted
May 29, 2018
Kind
B2
Abstract

Surfactant systems and compositions incorporating the same are disclosed for use as rinse aids on plastics and other wares. The surfactant systems and compositions include both liquid and solid formulations, along with methods of use for treating plastics and other wares. The surfactant systems and compositions provide synergistic combinations allowing lower actives in composition formulations of the plastic-compatible surfactant systems providing good sheeting, wetting and drying properties.

Claims (83)

1. A rinse aid composition comprising:

(A) a surfactant system comprising:

at least one nonionic alcohol alkoxylate according to the following formulas:

R 1 —O-(EO) x3 (PO) y3 —H  (A)

wherein R 1 is a straight-chain C 10 -C 16 alkyl, wherein x 3 is from 5 to 8, and wherein y 3 is from 2 to 5, or

R 1 —O-(EO) x4 (PO) 4 —H  (A2)

wherein R 1 is a straight-chain C 10 -C 16 alkyl, wherein x 4 is from 4 to 6, and wherein y 4 is from 3 to 5, and

a nonionic alcohol alkoxylate according to the following formula:

R 2 —O-(EO) x1 —H  (B)

wherein R 2 is C 10 -C 14 alkyl with an average of at least 2 branches per residue, and

wherein x 1 is from 5 to 10;

(B) at least one additional functional ingredient,

wherein the foam profile of the composition has a foam height of less than 5 inches after 5 minutes using the Glewwe method; and

wherein the composition is plastic-compatible providing sheeting, wetting and drying properties.

2. The composition of claim 1 , further comprising a nonionic alcohol alkoxylate according to the following formula:

R 2 —O-(EO) x2 —H  (C)

wherein R 2 is C 10 -C 14 alkyl with an average of at least 2 branches per residue, and wherein x 2 is from 2 to 4.

3. The composition of claim 2 , further comprising at least one additional surfactant polymer from the group consisting of the following formulae:

R 7 —O—(PO) y 5 (EO) x 5 (PO) y 6   (D)

wherein R 7 is a branched C 8 -C 16 Guerbet alcohol, x 5 is from 5 to 30, y 5 is from 1 to 4, and y 6 is from 10 to 20,

R 6 —O—(PO) y 4 (EO) x 4   (E)

wherein R 6 is a C 8 -C 16 guerbet alcohol, wherein x 4 is from 2 to 10, and wherein y 4 is from 1 to 2,

wherein x is from 12-20, y is from 12 to 20, and z is from 12 to 20,

wherein x is from 88 to 108, y is from 57 to 77, and z is from 88 to 108,

wherein x is from 15 to 25, y is from 10 to 25, and z is from 15 to 25,

R 4 —O-(EO) x (XO) y —H  (I)

wherein R4 is C 13 -C 15 alkyl, x is from 8 to 10, y is from 1 to 3, and XO is butylene oxide,

R 5 —O-(EO) x (PO) y —H  (J)

wherein R5 is C 12 -C 15 alkyl, x is from 3 to 5, and y is from 5 to 7,

and combinations thereof.

4. The composition of claim 1 , wherein the composition is a liquid concentrate.

5. The composition of claim 1 , wherein the composition is a solid.

6. The composition of claim 5 , wherein the composition is a pressed or an extruded solid and optionally further comprises a block EO-PO-EO surfactant polymer with the formulae (EO)x6 (PO)y7(EO)x6 wherein x 6 is from 88 to 108, and y 7 is from 57 to 77.

7. The composition of claim 1 , wherein the contact angle of the composition is reduced at least 5 degrees compared to a conventional rinse aid composition.

8. The composition of claim 7 , wherein the contact angle of the composition is reduced at least 10 degrees compared to a conventional rinse aid composition.

9. The composition of claim 2 , wherein the weight ratio of the nonionic alcohol alkoxylate of the surfactant system comprises from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (A or A2), from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (B), and from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (C).

10. The surfactant system of claim 2 , wherein the weight ratio of the nonionic alcohol alkoxylate of the surfactant system comprises from 30 to 45 parts by weight of the alcohol alkoxylate according to formula (A or A2), from 20 to 50 parts by weight of the alcohol alkoxylate according to formula (B), and from 5 to 40 parts by weight of the alcohol alkoxylate according to formula (C).

11. The composition of claim 2 , wherein the ratio of the nonionic alcohol alkoxylates is about 30/30/40 (A or A2/B/C) to about 45/45/10 (A or A2/B/C).

12. The composition of claim 1 , wherein the additional functional ingredient is a hardening agent, carrier, chelating agent, sequestering agent, builder, water conditioner, bleaching agent, sanitizer, defoaming agent, anti-redeposition agent, optical brightener, dye, odorant, stabilizing agent, dispersant, enzyme, corrosion inhibitor, thickener and/or solubility modifier.

13. A rinse aid composition comprising:

(A) a surfactant system comprising:

at least one nonionic alcohol alkoxylate according to the following formulas:

R 1 —O-(EO) x3 (PO) y3 —H  (A)

wherein R 1 is a straight-chain C 10 -C 16 alkyl, wherein x 3 is from 5 to 8, and wherein y 3 is from 2 to 5, or

R 1 —O-(EO) x4 (PO) y4 —H  (A2)

wherein R 1 is a straight-chain C 10 -C 16 alkyl, wherein x 4 is from 4 to 6, and wherein y 4 is from 3 to 5,

a nonionic alcohol alkoxylate according to the following formula:

R 2 —O-(EO) x1 —H  (B)

wherein R 2 is C 10 -C 14 alkyl with an average of at least 2 branches per residue, and wherein x 1 is from 5 to 10; and

(B) at least one additional functional ingredient is selected from the group consisting of a sequestrant, water conditioning agent, acidulant, chelant, builder and combinations of the same,

wherein the composition is a use solution having a pH of 8.5 or below, from about 1 ppm to about 125 ppm surfactant system actives,

wherein the foam profile of the composition has a foam height of less than 5 inches after 5 minutes using the Glewwe method; and

wherein the composition is plastic-compatible providing sheeting, wetting and drying properties.

14. The composition of claim 13 , further comprising a nonionic alcohol alkoxylate according to the following formula:

R 2 —O-(EO) x2 —H  (C),

wherein R 2 is C 10 -C 14 alkyl with an average of at least 2 branches per residue, and wherein x 2 is from 2 to 4, and wherein the weight ratio of the nonionic alcohol alkoxylate of the surfactant system comprises from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (A or A2), from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (B), and from 5 to 80 parts by weight of the alcohol alkoxylate according to formula (C).

15. The composition of claim 13 , wherein the ratio of the nonionic alcohol alkoxylates is about 30/30/40 (A or A2/B/C) to about 45/45/10 (A or A2/B/C).

16. The composition of claim 14 , further comprising at least one additional surfactant polymer from the group consisting of the following formulae:

R 7 —O—(PO) y 5 (EO) x 5 (PO) y 6   (D)

wherein R 7 is a branched C 8 -C 16 Guerbet alcohol, x 5 is from 5 to 30, y 5 is from 1 to 4, and y 6 is from 10 to 20,

R 6 —O—(PO) y 4 (EO) x 4   (E)

wherein R 6 is a C 8 -C 16 guerbet alcohol, wherein x 4 is from 2 to 10, and wherein y 4 is from 1 to 2,

wherein x is from 12-20, y is from 12 to 20, and z is from 12 to 20,

wherein x is from 88 to 108, y is from 57 to 77, and z is from 88 to 108,

wherein x is from 15 to 25, y is from 10 to 25, and z is from 15 to 25,

R 4 —O-(EO) x (XO) y —H  (I)

wherein R4 is C 13 -C 15 alkyl, x is from 8 to 10, y is from 1 to 3, and XO is butylene oxide,

R 5 —O-(EO) x (PO) y —H  (J)

wherein R5 is C 12 -C 15 alkyl, x is from 3 to 5, and y is from 5 to 7,

and combinations thereof.

17. The composition of claim 13 , wherein a use solution thereof provides from about 1 ppm to about 50 ppm surfactant system actives.

18. The composition of claim 13 , wherein the composition is a solid and comprises from about 10 wt-% to about 80 wt-% surfactant system, from about 0 wt-% to about 80 wt-% coupling agent, from about 10 wt-% to about 80 wt-% solidification aid, from about 0 wt-% to about 10 wt-% water conditioning agent, from about 0 wt-% to about 10 wt-% chelant, from about 0 wt-% to about 20 wt-% acidulant, from about 0 wt-% to about 5 wt-% water, and from about 0 wt-% to about 2 wt-% preservative and/or dye.

19. The composition of claim 13 , wherein the composition is a liquid and comprises from about 2 wt-% to about 90 wt-% surfactant system, from about 0 wt-% to about 80 wt-% coupling agent, from about 0 wt-% to about 10 wt-% water conditioning agent, from about 0 wt-% to about 10 wt-% chelant, from about 0 wt-% to about 15 wt-% acidulant, from about 0 wt-% to about 95 wt-% water, and from about 0 wt-% to about 2 wt-% preservative and/or dye.

20. The composition of claim 13 , further comprising an additional functional ingredient selected from the group consisting of a solidification aid, carrier, chelating agent, bleaching agent, sanitizer, defoaming agent, anti-redeposition agent, optical brightener, dye, odorant, stabilizing agent, dispersant, enzyme, corrosion inhibitor, thickener and/or solubility modifier.

21. A method for rinsing a surface comprising:

(A) providing a rinse aid composition according to claim 1 ;

(B) contacting the composition with water to form a use solution providing from about 1 ppm to about 125 ppm surfactant system actives; and

(C) applying the use solution to a surface in need of rinsing at a temperature above 160° F., wherein the surfactant system reduces the contact angle of the composition by at least about 5 degrees compared to the contact angle of a commercially-available rinse aid composition to induce sheeting and result in a faster drying time of the surface.

22. The method of claim 19 , wherein the surfactant system reduces the contact angle of the composition by at least about 10 degrees compared to the contact angle of a commercially-available rinse aid to induce sheeting and result in a faster drying time of the surface.

23. The method of claim 19 , wherein the surface is a ware.

24. The method of claim 21 , wherein the ware is plastic.

25. The method of claim 22 , wherein the ware dries within about 30 to about 90 seconds after the use solution is applied to the ware.

26. The method of claim 19 , wherein the method takes place in a consumer or institutional dish machine.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2021
From: BASF SE
To: ECOLAB USA INC.
Reel/Frame 057766/0607 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2018
From: DAILEY, JAMES S.; GESSNER, THOMAS
To: BASF CORPORATION
Reel/Frame 045580/0068 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2018
From: BASF CORPORATION
To: BASF SE
Reel/Frame 045580/0103 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2016
From: DAILEY, JAMES S.; GESSNER, THOMAS; TROPSCH, JUERGEN
To: BASF SE
Reel/Frame 038642/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2016
From: KIEFFER, JANEL M.; EVERSON, TERRENCE P.
To: ECOLAB USA INC.
Reel/Frame 038754/0451 →
Continuity (2)
Provisional Application 62163454 · May 19, 2015
Related Publication 20160340613A1 · Nov 24, 2016