EP0971104A2

An exhaust gas purification device for an internal combustion engine

Abstract

Start catalysts (SCs) having an O2 storage function are disposed in an exhaust gas passage of an internal combustion engine, and an NOx occluding and reducing catalyst is disposed in the exhaust gas passages downstream of the SCs. NOx in the exhaust gas is absorbed by the NOx occluding and reducing catalyst when the engine is in operation at a lean air-fuel ratio. When NOx is to be released, the engine is operated at a rich air-fuel ratio so that exhaust gas having a rich air-fuel ratio flows into the SCs and into the NOx occluding and reducing catalyst. An electronic control unit (ECU) executes the secondary fuel injection that does not contribute to the combustion in the expansion stroke or in the exhaust stroke of each cylinder by using a direct cylinder fuel injection valve at the time when the engine operating air-fuel ratio is to be changed from a lean air-fuel ratio operation to a rich air-fuel ratio, so that exhaust gas having a rich air-fuel ratio flows into the SC and that oxygen stored in the SC is released. At the time of changing over the air-fuel ratio, therefore, the air-fuel ratio is changed from the lean side to the rich side without delay, eliminating such an occurrence that NOx is released from the NOx occluding and reducing catalyst without being purified at the time of changing the air-fuel ratio.

EP0971104A2, drawing sheet 1
Sheet 1 of 39

Term

Term ended

Projected expiry passed 9 July 2019, 7.2 years ago.

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21 claims: 3 independent, 18 dependent

  1. 1
    An exhaust gas purification device for an internal combustion engine which operates at a lean operating air-fuel ratio and a stoichiometric operating air-fuel ratio or a rich operating air-fuel ratio as required, comprising:an exhaust gas purifying catalyst disposed in an exhaust gas passage of the engine and having an O 2 storage capability;and a storage decreasing means for decreasing the amount of oxygen stored in said exhaust gas purifying catalyst by feeding the fuel that does not contribute to the combustion to the engine so that the air-fuel ratio of the exhaust gas flowing into said exhaust gas purifying catalyst is more enriched than the engine operating air-fuel ratio when the engine operating air-fuel ratio is to be changed from a lean air-fuel ratio to the stoichiometric air-fuel ratio or a rich air-fuel ratio.
  2. 4
    An exhaust gas purification device for an internal combustion engine which operates at a lean air-fuel ratio as required, comprising:an exhaust gas purifying catalyst disposed in an exhaust gas passage of the engine and having an O 2 storage capability;an NOx occluding and reducing catalyst disposed in said exhaust gas passage on the downstream side of said exhaust gas purifying catalyst to absorb NOx in the exhaust gas when the air-fuel ratio of the exhaust gas flowing in is a lean air-fuel ratio and to release the absorbed NOx when the oxygen concentration in the exhaust gas flowing in has decreased;means for executing a rich-spike operation for changing the engine operating air-fuel ratio into a rich air-fuel ratio for a short period of time when the absorbed NOx are to be released from said NOx occluding and reducing catalyst while the engine is operating at a lean air-fuel ratio;and a storage decreasing means for decreasing the amount of oxygen stored in said exhaust gas purifying catalyst by further enriching the air-fuel ratio of the exhaust gas flowing into said exhaust gas purifying catalyst beyond the air-fuel ratio of the exhaust gas during said rich-spike operation for a predetermined period of time immediately after the start of said rich-spike operation.
  3. 13
    An exhaust gas purification device for an internal combustion engine which operates at a lean air-fuel ratio and at the stoichiometric air-fuel ratio or at a rich air-fuel ratio as required, comprising:an exhaust gas purifying catalyst disposed in an exhaust gas passage of the engine and having an O 2 storage capability;an NOx occluding and reducing catalyst disposed in said exhaust gas passage on the downstream side of said exhaust gas purifying catalyst to absorb NOx in the exhaust gas when the air-fuel ratio of the exhaust gas flowing in is lean and to release the absorbed NOx when the oxygen concentration in the exhaust gas flowing in has decreased;an NOx occlusion amount-estimating means for estimating the amount of NOx occluded by said NOx occluding and reducing catalyst based on the operating conditions of the engine;and an NOx occlusion amount correction means for correcting the occluded amount of NOx estimated by said NOx occlusion amount-estimating means based on the amount of oxygen stored in said exhaust gas purifying catalyst when said engine operating air-fuel ratio has changed.