IP Library Granted Patent US 11,020,704
Granted Patent B2
US 11,020,704 · App. 15/126,909 · Granted Jun 1, 2021

System and method for removing airborne molecular contaminants from gas streams

Inventors: Marc Venet (Natick, MA); John C. Gaudreau (Chepachet, RI); Jürgen M Lobert (Franklin, MA)
Assignee: ENTEGRIS, INC.
B01D53/346B01D46/008B01D46/0023B01D46/0086B01D46/44B01D53/0454B01D53/72B01D53/75B01D53/82G03F7/70908G03F7/70991B01D2257/406B01D2257/702B01D2257/7022B01D2257/7027B01D2259/40084B01D2259/41B01D2259/4146B01D2259/4148
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Quick Facts
Patent No.
US 11,020,704
App. No.
15/126,909
Granted
Jun 1, 2021
Kind
B2
Abstract

System and method for removing molecular contaminants from an air stream are disclosed. The system includes first, second and third filter. The first filter removes organic contaminants from an air stream passing through the first filter. The second filter is downstream of the first filter, is physically and chemically exchangeable with the first filter and removes organic contaminants from the air stream output of the first filter. The third filter, downstream of the second filter, is not exchangeable with the first filter or the second filter. The first position filter can be replaced by the second filter in the second position when the first filter in the first position becomes depleted as detected. A new filter in the second filter position is inserted. Replacing the depleted first filter with the second downstream filter reduces costs and waste while inserting the new filter in the second position ensures removing organic contaminants.

Claims (42)

1. A stack of replaceable filters comprising:

a first filter that comprises a media layer that is capable of removing airborne contaminants selected from the group consisting of organics and acids from an air stream that passes through the first filter;

a second filter downstream of the first filter that is physically and chemically exchangeable with the first filter, the second filter comprises a media layer that is capable of removing airborne contaminants selected from the group consisting of organics and acids from the air stream output from the first filter; and

a third filter downstream of the second filter, wherein the third filter is not physically and chemically exchangeable with the first filter or the second filter and the third filter comprises a media layer that is capable of removing a base from the air stream output from the second filter; and

an initial capacity of the first filter and an initial capacity of the second filter for a removal of airborne molecular organic contaminants are within +/−25% as measured in part per billion-hours at a same gas flow rate and contaminant input challenge; and the second filter has a capacity for airborne organic contaminants sufficient to permit exchange with a depleted first filter.

2. The stack of replaceable filters of claim 1 , wherein the airborne organic contaminants comprise a plurality of organic contaminants.

3. The stack of replaceable filters of claim 2 , wherein the airborne organic contaminants comprise hexamethydisiloxane and propylene glycol monomethyl ether acetate.

4. The stack of replaceable filters of claim 1 , further comprising four monitor mechanism to measure breakthrough of airborne contaminants through each of the filters in the stack, the four monitor mechanism comprising: a first interstack monitor in a first interstack which is downstream of the first filter and upstream of the second filter to measure breakthrough of airborne contaminants from the first filter; a second interstack monitor which is downstream of the second filter and upstream of the third filter to measure breakthrough of airborne contaminants from the second filter; an inlet stack monitor at the inlet of the stack upstream of the first filter; and outlet stack monitor at the outlet of the stack downstream of the third filter.

5. The stack of replaceable filters of claim 4 , wherein the monitor mechanism comprises sensors.

6. The stack of replaceable filters of claim 1 , wherein:

the first filter has removed airborne contaminants that can be detected; and

the second filter has removed less airborne contaminants compared to the first filter.

7. The stack of replaceable filters of claim 6 , wherein the airborne organic contaminants comprise a plurality of organic contaminants.

8. The stack of replaceable filters of claim 7 , wherein the organic contaminants comprise hexamethydisiloxane and propylene glycol monomethyl ether acetate.

9. The stack of replaceable filters of claim 6 , further comprising four monitor mechanism to measure breakthrough of airborne contaminants through each of the filters in the stack, the four monitor mechanism comprising: a first interstack monitor in a first interstack which is downstream of the first filter and upstream of the second filter to measure breakthrough of airborne contaminants from the first filter; a second interstack monitor which is downstream of the second filter and upstream of the third filter to measure breakthrough of airborne contaminants from the second filter; an inlet stack monitor at the inlet of the stack upstream of the first filter; and outlet stack monitor at the outlet of the stack downstream of the third filter.

10. The stack of replaceable filters of claim 9 , wherein the monitor mechanism comprises sensors.

11. The stack of replaceable filters of claim 1 , wherein the airborne organic contaminants comprise hexamethydisiloxane.

12. The stack of replaceable filters of claim 1 , wherein the airborne organic contaminants comprise propylene glycol monomethyl ether acetate.

13. The stack of replaceable filters of claim 1 , wherein the airborne organic contaminants comprise toluene.

14. The stack of replaceable filters of claim 1 , wherein the base comprises ammonia.

15. The stack of replaceable filters of claim 6 , wherein the airborne organic contaminants comprise hexamethydisiloxane.

16. The stack of replaceable filters of claim 6 , wherein the airborne organic contaminants comprise propylene glycol monomethyl ether acetate.

17. The stack of replaceable filters of claim 6 , wherein the airborne organic contaminants comprise toluene.

18. The stack of replaceable filters of claim 6 , wherein the base comprises ammonia.

19. A gas cabinet comprising at least one stack of filters of claim 1 .

20. A stack of replaceable filters comprising:

a first filter that comprises a media layer that is capable of removing airborne organic contaminants from an air stream that passes through the first filter;

a second filter downstream of the first filter that is physically and chemically exchangeable with the first filter, the second filter comprises a media layer that is capable of removing airborne organic contaminants from the air stream output from the first filter; and

a third filter downstream of the second filter, the third filter comprising a first media layer that is capable of removing a base from the air stream output from the second filter and a second media layer that is capable of removing a base from the air stream output from the second filter, wherein the first media layer is different from the second media layer, and wherein the third filter is not physically and chemically exchangeable with the first filter or the second filter; and

an initial capacity of the first filter and an initial capacity of the second filter for a removal of airborne molecular organic contaminants are within +/−25% as measured in part per billion-hours at a same gas flow rate and contaminant input challenge; and the second filter has a capacity for airborne organic contaminants sufficient to permit exchange with a depleted first filter.

21. The stack of replaceable filters of claim 20 , further comprising four monitor mechanism to measure breakthrough of airborne contaminants through each of the filters in the stack, the four monitor mechanism comprising: a first interstack monitor in a first interstack which is downstream of the first filter and upstream of the second filter to measure breakthrough of airborne contaminants from the first filter; a second interstack monitor which is downstream of the second filter and upstream of the third filter to measure breakthrough of airborne contaminants from the second filter; an inlet stack monitor at the inlet of the stack upstream of the first filter; and outlet stack monitor at the outlet of the stack downstream of the third filter.

22. The stack of replaceable filters of claim 21 , wherein the monitor mechanism comprises sensors.

23. The stack of replaceable filters of claim 20 , wherein the airborne organic contaminants comprise hexamethydisiloxane.

24. The stack of replaceable filters of claim 20 , wherein the airborne organic contaminants comprise propylene glycol monomethyl ether acetate.

25. The stack of replaceable filters of claim 20 , wherein the airborne organic contaminants comprise toluene.

26. The stack of replaceable filters of claim 20 , wherein the airborne organic contaminants comprise hexamethydisiloxane and propylene glycol monomethyl ether acetate.

27. The stack of replaceable filters of claim 20 , wherein the base comprises ammonia.

28. The stack of replaceable filters of claim 20 , wherein:

the first filter has removed airborne organic contaminants that can be detected; and

the second filter has removed less airborne organic contaminants compared to the first filter.

29. The stack of replaceable filter of claim 20 , wherein the first media layer removes airborne organic contaminants and the base and the second media layer removes the base.

30. A gas cabinet comprising at least one stack of filters of claim 20 .

Assignments (4)
SECURITY INTEREST Recorded Jul 8, 2022
From: ENTEGRIS, INC.; ENTEGRIS GP, INC.; POCO GRAPHITE, INC.; CMC MATERIALS, INC.; INTERNATIONAL TEST SOLUTIONS, LLC; QED TECHNOLOGIES INTERNATIONAL, INC.
To: TRUIST BANK, AS NOTES COLLATERAL AGENT
Reel/Frame 060613/0072 →
ASSIGNMENT OF PATENT SECURITY INTEREST RECORDED AT REEL/FRAME 048811/0679 Recorded Nov 5, 2019
From: GOLDMAN SACHS BANK USA
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 050965/0035 →
SECURITY INTEREST Recorded Nov 13, 2018
From: ENTEGRIS, INC.; SAES PURE GAS, INC.
To: GOLDMAN SACHS BANK USA
Reel/Frame 048811/0679 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2016
From: VENET, MARC; GAUDREAU, JOHN C.; LOBERT, JÜRGEN M.
To: ENTEGRIS, INC.
Reel/Frame 039769/0282 →
Continuity (2)
Provisional Application 61955577 · Mar 19, 2014
Related Publication 20170095771A1 · Apr 6, 2017