Emissions treatment systems with TWC catalysts and SCR-HCT catalysts

US9931596B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9931596-B2
Application numberUS-201515503903-A
CountryUS
Kind codeB2
Filing dateOct 21, 2015
Priority dateOct 21, 2014
Publication dateApr 3, 2018
Grant dateApr 3, 2018

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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Abstract

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An emissions treatment system for an exhaust stream of an internal combustion engine including hydrocarbons, carbon monoxide, and nitrogen oxides is provided. The disclosed system can include an exhaust conduit in fluid communication with the internal combustion engine via an exhaust manifold; a first three-way conversion catalyst (TWC-1) located downstream of the internal combustion engine in the exhaust conduit; an SCR-HCT catalyst comprising a selective catalytic reduction catalyst and a hydrocarbon trap downstream of the TWC-1 in the exhaust conduit; and a third catalyst downstream of the SCR-HCT combination in the exhaust conduit, the third catalyst comprising a platinum group metal (PGM) e.g., in an amount effective to oxidize hydrocarbons. Methods of making and using such systems and components thereof are also provided.

First claim

Opening claim text (preview).

What is claimed: 1. An emissions treatment system for an exhaust stream of an internal combustion engine, the exhaust stream comprising hydrocarbons, carbon monoxide, and nitrogen oxides, comprising: an exhaust conduit in fluid communication with the internal combustion engine via an exhaust manifold; a first three-way conversion catalyst (TWC-1) located downstream of the internal combustion engine in the exhaust conduit; an SCR-HCT catalyst comprising a selective catalytic reduction (SCR) catalyst and a hydrocarbon trap (HCT) downstream of the TWC-1 in the exhaust conduit; and a third catalyst downstream of the SCR-HCT catalyst in the exhaust conduit, the third catalyst comprising a platinum group metal (PGM). 2. The emissions treatment system of claim 1 , wherein the SCR-HCT catalyst comprises an SCR catalytic material that comprises a first molecular sieve and an HCT material that comprises a second molecular sieve that is different from the first molecular sieve, wherein both the SCR catalytic material and the HCT material are deposited on a monolithic substrate. 3. The emissions treatment system of claim 2 , wherein the first molecular sieve comprises a Cu-CHA zeolite and the second molecular sieve comprises a Beta zeolite. 4. The emissions treatment system of claim 2 , wherein the SCR catalytic material and the HCT material are present in a weight ratio of 10:1 to 1:10. 5. The emissions treatment system of claim 2 , wherein the monolithic substrate is a flow-through substrate or a wall-flow filter. 6. The emissions treatment system of claim 2 , wherein the first molecular sieve comprises an 8-member ring small pore zeolite containing a metal promoter and the second molecular sieve comprises a 10-member ring medium pore or a 12-member ring large pore zeolite. 7. The emissions treatment system of claim 6 , wherein the 10-member ring medium pore or 12-member ring large pore zeolite comprises a metal promoter. 8. The emissions treatment system of claim 6 , wherein the 8-member ring zeolite is ion-exchanged with one or more of copper and iron, having a CHA, SAPO, or AEI structure. 9. The emissions treatment system of claim 7 , wherein the 10- or 12-member ring zeolite has a structure type of ZSM-5, Beta, or MFI in an H + , NH 4+ , Cu-exchanged, or Fe-exchanged form. 10. The emissions treatment system of claim 2 , wherein the HCT material and the SCR catalytic material are in a homogenously mixed layer on the monolithic substrate. 11. The emissions treatment system of claim 2 , wherein the HCT material and the SCR catalytic material are in a layered configuration on the monolithic substrate. 12. The emissions treatment system of claim 2 , wherein the HCT material and the SCR catalytic material are in a zoned configuration on the monolithic substrate. 13. The emissions treatment system of claim 1 , wherein the third catalyst is selected from the group consisting of a second three-way conversion (TWC-2) catalyst, an oxidation catalyst (OC), and a lean NOx trap (LNT). 14. The emissions treatment system of claim 1 , wherein the third catalyst is heated by an external source. 15. The emissions treatment system of claim 1 , wherein both the TWC-1 and the third catalyst comprise carriers and wherein the carrier for the third catalyst has a smaller thermal mass relative to the carrier for the TWC-1. 16. The emissions treatment system of claim 1 , wherein the TWC-1 is located in a close-coupled position; and the SCR-HCT catalyst and the third catalyst are located in an underfloor position. 17. The emissions treatment system of claim 1 , wherein the TWC-1, the SCR-HCT catalyst, and the third catalyst are all located in one module. 18. The emissions treatment system of claim 1 , wherein the SCR-HCT catalyst and the third catalyst are both located in one module. 19. The emissions treatment system of claim 1 , further comprising an air supply upstream of the SCR-HCT catalyst. 20. The emissions treatment system of claim 1 , comprising: an exhaust conduit in fluid communication with the internal combustion engine via an exhaust manifold; a first three-way conversion catalyst (TWC-1) located downstream of the internal combustion engine in the exhaust conduit; an SCR-HCT catalyst comprising a selective catalytic reduction (SCR) catalyst and a hydrocarbon trap (HCT) downstream of the TWC-1 in the exhaust conduit, the SCR catalyst comprising a first molecular sieve and the HCT catalyst comprising a second molecular sieve that is different from the first molecular sieve; and a second three-way conversion catalyst (TWC-2) downstream of the SCR-HCT catalyst in the exhaust conduit, the TWC-2 comprising a platinum group metal (PGM) and an oxygen storage component. 21. The emissions treatment system of claim 20 , wherein the first molecular sieve comprises an 8-member ring zeolite having a CHA, SAPO, or AEI structure that is ion-exchanged with copper or iron and the second molecular sieve comprises a 10- or 12-member ring zeolite having a ZSM-5, Beta, or MFI structure in a H + , NH 4+ , Cu-exchanged, or Fe-exchanged form, wherein the 10- or 12-member ring zeolite is optionally ion-exchanged, and wherein the HCT and the SCR catalyst are in a layered configuration on a monolithic substrate. 22. The emissions treatment system of claim 20 , wherein the first molecular sieve comprises a Cu-CHA zeolite and the second molecular sieve comprises a Beta zeolite. 23. A method for treating exhaust gases, comprising contacting a gaseous stream comprising hydrocarbons (HCs), carbon monoxide (CO), and nitrogen oxides (NOx) with the emissions treatment system according to claim 1 . 24. The method of claim 23 , wherein: upon contact with the TWC-1, hydrocarbons, carbon monoxide, and nitrogen oxides are substantially simultaneously converted and ammonia is generated; upon contact with the SCR-HCT catalyst, ammonia is stored in the SCR catalyst and used for reduction of breakthrough NOx, and hydrocarbons are trapped in the HCT during cold start and released at higher temperatures; and upon contact with the third catalyst, hydrocarbons released from the HCT are lit-off. 25. A method of making an emissions treatment system, the method comprising: providing a first three-way conversion (TWC-1) catalyst located downstream of an internal combustion engine in an exhaust conduit; locating an SCR-HCT catalyst comprising a selective catalytic reduction (SCR) catalyst and a hydrocarbon trap (HCT) downstream of the TWC-1 in the exhaust conduit; and locating a third catalyst downstream of the SCR-HCT catalyst in the exhaust conduit, the third catalyst comprising a platinum group metal (PGM).

Assignees

Inventors

Classifications

  • Selective catalytic reduction [SCR] · CPC title

  • F01N3/20Primary

    specially adapted for catalytic conversion (F01N3/22 takes precedence) · CPC title

  • F01N3/101Primary

    Three-way catalysts · CPC title

  • F01N3/08Primary

    for rendering innocuous (using electric or electrostatic separators F01N3/01; chemical aspects B01D53/92) · CPC title

  • Silicoaluminophosphates [SAPO compounds] · CPC title

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What does patent US9931596B2 cover?
An emissions treatment system for an exhaust stream of an internal combustion engine including hydrocarbons, carbon monoxide, and nitrogen oxides is provided. The disclosed system can include an exhaust conduit in fluid communication with the internal combustion engine via an exhaust manifold; a first three-way conversion catalyst (TWC-1) located downstream of the internal combustion engine in …
Who is the assignee on this patent?
Basf Corp
What technology area does this patent fall under?
Primary CPC classification F01N3/20. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Apr 03 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).