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다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | UP-0164007 (2005-11-07) |
등록번호 | US-7682577 (2010-04-21) |
발명자 / 주소 |
|
출원인 / 주소 |
|
인용정보 | 피인용 횟수 : 0 인용 특허 : 401 |
A simple catalytic device that is easily installed into vehicles, small engines, and industrial exhaust stacks is provided. The simple catalytic device has a ridged and stable backbone structure that withstands expected mechanical forces. In one example, the backbone is a highly gas permeable mesh o
A simple catalytic device that is easily installed into vehicles, small engines, and industrial exhaust stacks is provided. The simple catalytic device has a ridged and stable backbone structure that withstands expected mechanical forces. In one example, the backbone is a highly gas permeable mesh or screen. A fibrous material is disposed on the backbone, with a catalytic material coating applied to the fibrous material. The catalytic device is constructed to be installable in an exhaust path, where it provides a catalytic conversion for non-particulate matter.
What is claimed is: 1. A catalytic device, comprising: a fluid permeable backbone portion defining a plurality of apertures; a substantially fibrous porous nonwoven material portion at least partially disposed on and adhered to the backbone portion, the substantially fibrous porous nonwoven refract
What is claimed is: 1. A catalytic device, comprising: a fluid permeable backbone portion defining a plurality of apertures; a substantially fibrous porous nonwoven material portion at least partially disposed on and adhered to the backbone portion, the substantially fibrous porous nonwoven refractory material comprising intertangled refractory fibers bonded into a porous matrix; the plurality of apertures and substantially fibrous porous nonwoven material forming corresponding exhaust channels; and a catalytic material portion disposed on at least some of the fibrous material. 2. The catalytic device according to claim 1, wherein the backbone portion is constructed as a mesh. 3. The catalytic device according to claim 1, wherein the backbone portion is constructed as perforated sheet. 4. The catalytic device according to claim 1, wherein the backbone portion is constructed as a screen. 5. The catalytic device according to claim 1, wherein the backbone portion is constructed from a refractory material and wherein the substantially fibrous nonwoven material portion is formed of a refractory material. 6. The catalytic device according to claim 1, wherein the backbone portion defines a plurality of intersecting and connected wires. 7. The catalytic device according to claim 6, wherein the fibrous material portion is disposed around the wires and wherein the apertures are substantially filled with fluid. 8. The catalytic device according to claim 6, wherein the fibrous material portion is disposed around the wires and substantially fills the apertures. 9. The catalytic device according to claim 1, wherein the backbone portion is curved into a tube. 10. The catalytic device according to claim 1, wherein the backbone portion is formed into a perforated tube. 11. The catalytic device according to claim 1, wherein the backbone portion is pleated. 12. The catalytic device according to claim 1, wherein the backbone portion includes a pair of substantially parallel members and wherein the substantially fibrous nonwoven material portion is substantially disposed between the pair of members. 13. The catalytic device according to claim 1, wherein the backbone portion includes a plurality of substantially parallel sheets and wherein substantially fibrous nonwoven material is disposed between respective sequential pairs of sheets. 14. The catalytic device according to claim 1 wherein the substantially fibrous nonwoven material portion further comprises a first layer and a second layer. 15. The catalytic device according to claim 14, wherein the first and second layers have different compositions. 16. The catalytic device according to claim 14, wherein the first and second layers have different porosities. 17. The catalytic device according to claim 14, wherein the first and second layers have different densities. 18. A catalytic system, comprising: an exhaust path; and at least one catalytic screen positioned in the exhaust path; wherein the at least one catalytic screens further comprises: a highly gas permeable backbone; a substantially fibrous porous nonwoven refractory material disposed on and adhered to the backbone, the substantially fibrous porous nonwoven refractory material comprising intertangled refractory fibers bonded into a porous matrix; the gas permeable backbone and substantially fibrous porous nonwoven material forming a plurality of exhaust channels; and a catalytic material disposed on at least some of the fibrous material. 19. The catalytic system according to claim 18 wherein the at least one catalytic screen is a plurality of catalytic screens. 20. The catalytic system according to claim 19 wherein the plurality of catalytic screens are adjacent to each other. 21. The catalytic system according to claim 19, wherein one of the respective catalytic screens has a catalytic material different than the catalytic material on another one of the respective catalytic screens. 22. The catalytic system according to claim 19, wherein one of the respective catalytic screens has an operational temperature different than the operational temperature of another one of the respective catalytic screens. 23. The catalytic system according to claim 18, wherein the at least one catalytic screen baffles the exhaust path. 24. The catalytic system according to claim 18, wherein the at least one catalytic screen is curved into at least one hollow tube. 25. The catalytic system according to claim 19, wherein the plurality of catalytic screens are stacked. 26. A screening device, comprising: a backbone portion; a plurality of apertures formed in the backbone portion; a substantially fibrous porous nonwoven material portion coupled to the backbone portion, the substantially fibrous porous nonwoven refractory material comprising intertangled refractory fibers bonded into a porous matrix; the plurality of apertures and substantially fibrous porous nonwoven material forming corresponding exhaust channels; and a catalytic material portion at least partially covering the substantially fibrous porous nonwoven material portion. 27. The screening device according to claim 26, wherein the backbone portion is constructed as a mesh. 28. The screening device according to claim 26, wherein the backbone portion is constructed as a screen. 29. The screening device according to claim 26, wherein the backbone portion defines a plurality of intersecting and connected wires. 30. The screening device according to claim 26, wherein the apertures are substantially filled with gas. 31. The screening device according to claim 26, wherein the apertures are substantially filled with the substantially fibrous porous nonwoven material portion.
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