IP Library Granted Patent US 10,589,210
Granted Patent B2
US 10,589,210 · App. 15/538,915 · Granted Mar 17, 2020

Aluminosilicates and coatings made therefrom for VOC removal

Inventors: Mingkang Zhou (Shanghai, CN); Eric G. Lundquist (North Wales, PA)
Assignee: Evonik Operations GmbH
B01D53/04B01D39/02B01D53/02B01D53/72B01J20/16B01J20/28061B01J20/28071B01J20/28073B01J20/28083B01J20/3293C01B33/26C09D5/02C09D7/61B01D2239/0407B01D2239/0492B01D2253/106B01D2253/108B01D2253/306B01D2253/308B01D2253/31B01D2253/311B01D2257/708B01D2258/06B01D2259/4508B01J20/14C01P2006/12C01P2006/14C01P2006/19C08K3/34C08K3/346Y02A50/235
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,589,210
App. No.
15/538,915
Granted
Mar 17, 2020
Kind
B2
Abstract

Amorphous aluminosilicates are disclosed, and these amorphous aluminosilicates are characterized by a unique combination of high surface area, low oil absorption, and a significant fraction of the total pore volume resulting from micropores. These amorphous aluminosilicates can be used in various paint and coating applications, with the resultant dried or solid film capable of removing VOC's from the surrounding air.

Claims (47)

1. A method of removing VOC's from an indoor environment, the method consisting of:

providing an interior surface at least partially covered with a coating consisting of amorphous sodium aluminosilicate particles, and optionally one or more of, a binder, a liquid, a colorant/pigment, rheology modifiers, surfactants, defoamers, coalescents, and biocides, the amorphous sodium aluminosilicate particles characterized by:

(i) a BET surface area in a range from about 120 to about 450 m 2 /g;

(ii) an oil absorption of less than or equal to about 150 cc/100 g;

(iii) a pore volume in a range from about 0.18 to about 0.6 cc/g; and

(iv) a micropore volume of pores with pore diameters of less than 50 Å that is from about 10% to about 80% of the pore volume; and

(v) a molar ratio of silica to alumina greater than 1.0.

contacting the VOC's with the interior surface, wherein at least a portion of the VOC's in the indoor environment are absorbed by the coating.

2. The method of claim 1 , wherein the amorphous sodium aluminosilicate particles are further characterized by:

a BET surface area in a range from about 120 to about 400 m 2 /g;

an oil absorption in a range from about 50 to about 150 cc/100 g;

a pore volume in a range from about 0.2 to about 0.5 cc/g; and

a micropore volume from about 15% to about 75% of the pore volume.

3. The method of claim 1 , wherein the amorphous sodium aluminosilicate particles are further characterized by a CTAB surface area in a range from about 30 to about 110 m 2 /g.

4. The method of claim 1 , wherein the amorphous sodium aluminosilicate particles are further characterized by:

a CTAB surface area in a range from about 40 to about 105 m 2 /g; and

a micropore volume from about 20% to about 60% of the pore volume.

5. The method of claim 1 , wherein the coating has a thickness in a range from about 5 to about 300 μm.

6. The method of claim 1 , wherein:

the coating passes a China JC/T 1074-2008 standard test for purification efficiency of formaldehyde at a level of ≥75%; and

the coating passes a China JC/T 1074-2008 standard test for persistence of purification efficiency of formaldehyde at a level of ≥60%.

7. The method of claim 1 , wherein:

the coating passes a China JC/T 1074-2008 standard test for purification efficiency of toluene at a level of ≥35%; and

the coating passes a China JC/T 1074-2008 standard test for persistence of purification efficiency of toluene at a level of ≥20%.

8. A method of removing VOC's from an air stream, the method consisting of:

passing the air stream through a filter, the filter consisting of fibers at least partially covered with amorphous sodium aluminosilicate particles, under conditions sufficient for at least a portion of the VOC's to contact the fibers and be entrained by the filter, thereby removing VOC's from the air stream;

wherein the amorphous sodium aluminosilicate particles are characterized by:

(i) a BET surface area in a range from about 120 to about 450 m 2 /g;

(ii) an oil absorption of less than or equal to about 150 cc/100 g;

(iii) a pore volume in a range from about 0.18 to about 0.6 cc/g; and

(iv) a micropore volume of pores with pore diameters of less than 50 Å that is from about 10% to about 80% of the pore volume; and

(v) a molar ratio of silica to alumina greater than 1.0.

9. The method of claim 8 , wherein the amorphous sodium aluminosilicate particles are further characterized by:

a BET surface area in a range from about 120 to about 400 m 2 /g;

an oil absorption in a range from about 50 to about 150 cc/100 g;

a pore volume in a range from about 0.2 to about 0.5 cc/g; and

a micropore volume from about 15% to about 75% of the pore volume.

10. The method of claim 8 , wherein the amorphous sodium aluminosilicate particles are further characterized by a CTAB surface area in a range from about 30 to about 110 m 2 /g.

11. The method of claim 8 , wherein the amorphous sodium aluminosilicate particles are further characterized by a micropore volume from about 20% to about 60% of the pore volume.

12. The method of claim 8 , wherein the amorphous sodium aluminosilicate particles are further characterized by a CTAB surface area in a range from about 40 to about 105 m 2 /g.

13. The method of claim 8 , wherein the amorphous sodium aluminosilicate particles are further characterized by an oil absorption in a range from about 45 to about 85 cc/100 g.

14. The method of claim 8 , wherein:

the filter passes a China JC/T 1074-2008 standard test for purification efficiency of formaldehyde at a level of ≥75%; and

the filter passes a China JC/T 1074-2008 standard test for persistence of purification efficiency of formaldehyde at a level of ≥60%.

15. The method of claim 8 , wherein:

the filter passes a China JC/T 1074-2008 standard test for purification efficiency of toluene at a level of ≥35%; and

the filter passes a China JC/T 1074-2008 standard test for persistence of purification efficiency of toluene at a level of ≥20%.

Assignments (5)
CHANGE OF NAME Recorded Nov 26, 2019
From: EVONIK DEGUSSA GMBH
To: EVONIK OPERATIONS GMBH
Reel/Frame 051135/0834 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: J.M. HUBER CORPORATION
To: EVONIK DEGUSSA GMBH
Reel/Frame 044037/0011 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: J.M. HUBER INVESTMENT (CHINA) LTD.
To: EVONIK DEGUSSA GMBH
Reel/Frame 044037/0095 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2017
From: ZHOU, MINGKANG
To: J.M. HUBER INVESTMENT (CHINA) LTD.
Reel/Frame 043340/0782 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2017
From: LUNDQUIST, ERIC G.
To: J.M. HUBER CORPORATION
Reel/Frame 043016/0247 →
Continuity (1)
Related Publication 20170341009A1 · Nov 30, 2017