IP Library Granted Patent US 11,000,836
Granted Patent B2
US 11,000,836 · App. 16/392,768 · Granted May 11, 2021

SCR catalysts having improved low temperature performance, and methods of making and using the same

Inventors: Guy Richard Chandler (Royston, GB); Jillian Elaine Collier (Reading, GB); Alexander Nicholas Michael Green (Royston, GB); Desiree Duran-Martin (Reading, GB); Paul Richard Phillips (Royston, GB); Raj Rao Rajaram (Berkshire, GB); Stuart David Reid (Royston, GB)
B01J29/072B01D53/56B01D53/565B01D53/9418B01J29/46B01J29/68B01J29/76B01J29/763B01J29/7615B01J29/85B01J37/0036B01J37/12B01J37/14B01J37/16B01J37/18C01B39/02C01B39/44C01B39/54B01D2251/2062B01D2251/2067B01D2255/20738B01D2255/50B01D2255/502B01D2255/504B01D2258/012B01D2258/0283B01J37/0045B01J2229/10B01J2229/186B01J2229/36B01J2229/40
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 11,000,836
App. No.
16/392,768
Granted
May 11, 2021
Kind
B2
Abstract

SCR-active molecular-sieve based catalysts with improved low-temperature performance are made by heating a molecular-sieve in a non-oxidizing atmosphere with steam (hydrothermal treatment), or in a reducing atmosphere without steam (thermal treatment), at a temperature in the range of 600-900° C. for a time period from 5 minutes to two hours. The resulting SCR-active iron-containing molecular sieves exhibit a selective catalytic reduction of nitrogen oxides with NH 3 or urea at 250° C. that is at least 50% greater than if the iron-containing molecular-sieve were calcined at 500° C. for two hours without performing the hydrothermal or thermal treatment.

Claims (13)

1. An SCR-active iron-containing molecular sieve, the iron-containing molecular sieve having undergone a hydrothermal treatment in a steam-containing non-oxidizing atmosphere, or a thermal treatment in a reducing atmosphere, at a temperature in the range of 600-900° C. for a time period from 5 minutes to two hours, and wherein the iron containing molecular sieve exhibits a selective catalytic reduction of nitrogen oxides with NH 3 or urea at 250° C. that is at least 50% greater than a comparable iron-containing molecular sieve that was calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere,

wherein the molecular sieve is a zeolite or a silicoaluminophosphate (SAPO);

wherein the molecular sieve is a BEA, FER, CHA, AFX, AEI, SFW, SAPO-34, SAPO-56, SAPO-18, SAPO SAV, or SAPO STA-7.

2. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the molecular sieve is small-pore or medium pore.

3. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the selective catalytic reduction is at least two times greater than if the iron-containing molecular sieve were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

4. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the selective catalytic reduction is at least three times greater than if the iron-containing molecular sieve were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

5. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the iron containing molecular sieve exhibits a selective catalytic reduction of nitrogen oxides with NH 3 or urea at 200° C. that is at least 50% greater than if the iron-containing molecular sieve were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

6. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the iron containing molecular sieve exhibits a selective catalytic reduction of nitrogen oxides with NH 3 or urea at 200° C. that is at least two times greater than if the iron-containing molecular sieve were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

7. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the iron present in the molecular sieve has a higher ratio of Fe 2+ to Fe 3+ than if the iron-containing molecular sieve were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

8. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the molecular sieve is a zeolite and the iron present in the zeolite has a higher ratio of Fe 2+ to Fe 3+ than if the iron-containing zeolite were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

9. The SCR-active iron-containing molecular sieve according to claim 1 , wherein the molecular sieve is a ferrierite and the iron present in the ferrierite has a higher ratio of Fe 2+ to Fe 3+ than if the iron-containing zeolite were calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere.

10. An SCR-active iron-containing molecular sieve, the iron-containing molecular sieve having undergone a hydrothermal treatment in a steam-containing non-oxidizing atmosphere, or a thermal treatment in a reducing atmosphere, at a temperature in the range of 600-900° C. for a time period from 5 minutes to two hours, and wherein the iron containing molecular sieve exhibits a selective catalytic reduction of nitrogen oxides with NH 3 or urea at 250° C. that is at least 50% greater than a comparable iron-containing molecular sieve that was calcined at 500° C. for two hours without performing the hydrothermal treatment in the non-oxidizing atmosphere or the thermal treatment in the reducing atmosphere,

wherein the molecular sieve is a silicoaluminophosphate (SAPO).

Assignments (2)
CHANGE OF ADDRESS Recorded Jan 14, 2026
From: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 074703/0733 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2021
From: CHANDLER, GUY RICHARD; COLLIER, JILLIAN ELAINE; GREEN, ALEXANDER NICHOLAS MICHAEL; DURAN-MARTIN, DESIREE; PHILLIPS, PAUL RICHARD; RAJARAM, RAJ RAO; REID, STUART DAVID
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 055869/0061 →
Continuity (3)
Continuation 14633777 · Feb 27, 2015
Provisional Application 61946065 · Feb 28, 2014
Related Publication 20190247836A1 · Aug 15, 2019