EP1663458B1

Emission treatment system and method using a scr filter

Abstract

This record has no abstract on file.

EP1663458B1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 30 July 2024, 2.2 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

33 claims: 4 independent, 29 dependent

  1. 1
    A catalyst article comprising a wall flow monolith having a plurality of longitudinally extending passages formed by longitudinally extending walls bounding and defining said passages, wherein the passages comprise inlet passages having an open inlet end and a closed outlet end, and outlet passages having a closed inlet end and an open outlet end, wherein the wall flow monolith comprises an SCR catalyst composition that permeates the walls at a concentration of at least 79.26 g/l (1.3 g/in 3 );wherein the wall flow monolith has a wall porosity of at least 50% with an average pore size of at least 5 microns.
  2. 17
    An emission treatment system for treatment of an exhaust stream comprising NOx and particulate matter, the emission treatment system comprising:a) an oxidation catalyst;b) an injector in fluid communication with and downstream of the oxidation catalyst, wherein the injector periodically meters ammonia or an ammonia precursor into the exhaust stream;and, c) a wall flow monolith in fluid communication with and downstream of the injector, wherein the wall flow monolith has a plurality of longitudinally exuding passages formed by longitudinally extending walls bounding and defining said passages, wherein the passages comprise inlet passages having an open inlet end and a closed outlet end, and outlet passages having a closed inlet end and an open outlet end, wherein the wall flow monolith comprises an SCR catalyst composition that permeates the walls at a concentration of at least 79,26 g/l (1.3 g/in 3 );wherein the wall flow monolith has a wall porosity of at least 50% with an average pore size of at least 5 microns.
  3. 26
    A method for treating emissions produced in an exhaust stream comprising NOx and particulate matter, the method comprising:(a) passing the exhaust stream through an oxidation catalyst wherein a substantial portion of NO is oxidized to NO 2 to provide an NO 2 -enriched exhaust stream;(b) metering at periodic intervals, ammonia or an ammonia precursor into the NO 2 -enriched exhaust stream;and, (c) subsequently passing the exhaust stream through a wall flow monolith wherein purticulate matter is filtered and a substantial portion of NOx is reduced to N 2 ;wherein the wall flow monolith has a plurality of longitudinally extending passages formed by longitudinally extending walls bounding and defining said passages, wherein the passages comprise inlet passages having an open inlet end and a closed outlet end, and outlet passages having a closed inlet end and an open outlet end, wherein the wall flow monolith comprises an SCR catalyst composition that permeates the walls at a concentration of at least 79.26 g/l (1.3 g/in 3 );wherein the wall flow monolith has a wall porosity of at least 50% with an average pore size of at least 5 microns.
  4. 33
    A method for disposing an SCR catalyst composition on a wall flow monolith, wherein the wall flow monolith has a plurality of longitudinally extending passages formed by longitudinally extending walls bounding and defining said passages, wherein the passages comprise inlet passages having an open inlet end and a closed outlet end, and outlet passages having a closed inlet end and an open outlet end, the method comprising:(a) immersing the wall flow monolith in an aqueous slurry comprising the SCR catalyst composition from a first direction to deposit the SCR catalyst composition on the inlet passages;(b) removing excess slurry from the inlet passages by forcing a compressed gas stream through the outlet passage and applying a vacuum to the inlet passages;(c) immersing the wall flow monolith in the aqueous flurry from a second direction, opposite the first direction, to deposit the SCR catalyst composition on the outlet passages;(d) removing excess slurry from the outlet passages by forcing a compressed gas stream through the inlet passages and applying a vacuum to the outlet passages;and (e) drying and calcining the coated wall flow monolith;wherein the wall flow monolith has a porosity of at least 50% and a mean pore size of at least 5 microns, and the SCR catalyst composition permeates the walls at a concentration of at least 79.26 g/l (1.3 g/in 3 ).