Catalyst deterioration diagnosis method

US10196958B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10196958-B2
Application numberUS-201514953737-A
CountryUS
Kind codeB2
Filing dateNov 30, 2015
Priority dateDec 3, 2014
Publication dateFeb 5, 2019
Grant dateFeb 5, 2019

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  5. First independent claim

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Abstract

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A method for diagnosing the degree of deterioration of a catalyst disposed in an exhaust path of an internal combustion engine and oxidizes or adsorbs a target gas, including at least one of a hydrocarbon gas and a carbon monoxide gas in an exhaust gas from the internal combustion engine, is adapted to determine whether deterioration exceeding an acceptable level of a catalyst occurs or not by comparing the concentration of a target gas detected downstream from the catalyst in the exhaust path when a diagnosis-gas atmosphere containing a target gas higher in concentration than a target gas during a steady-operation state of the internal combustion engine is intentionally produced and introduced into the catalyst with a threshold value corresponding to the temperature of a catalyst at the timing which the diagnosis-gas atmosphere is introduced.

First claim

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What is claimed is: 1. A method for diagnosing a degree of deterioration of a catalyst, said catalyst being disposed in an exhaust path of an internal combustion engine and oxidizing or absorbing a target gas that includes at least one of a hydrocarbon gas and a carbon monoxide gas, the target gas being contained in an exhaust gas from said internal combustion engine, said method performed by a catalyst deterioration diagnosis system comprising: a temperature sensor disposed upstream from said catalyst in said exhaust path and configured to measure a temperature of said exhaust gas containing said target gas upstream from said catalyst, a first hydrocarbon gas sensor disposed downstream from said catalyst in said exhaust path, said first hydrocarbon gas sensor configured to detect said target gas downstream from said catalyst and output an output value in accordance with a concentration of said target gas; an electronic control element configured to control said catalyst deterioration diagnosis system; and a storage part, said method comprising the steps of: a) intentionally generating and introducing into said catalyst a diagnosis-gas atmosphere containing a target gas whose concentration is higher than said target gas during a steady-operation state of said internal combustion engine and detecting the concentration of the target gas by said first hydrocarbon gas sensor downstream from said catalyst; and b) determining in said electronic control element whether deterioration exceeding an acceptable level of said catalyst occurs or not by comparing said concentration of the target gas detected in said step a) with a threshold value corresponding to the temperature of said catalyst at the timing which said diagnosis-gas atmosphere is introduced, wherein: the temperature of said catalyst is identified based on a measurement value in said temperature sensor, a threshold data describing threshold values to be used in said step b) according to the temperature of said catalyst is previously defined and stored in said storage part, said step of intentionally generating and introducing into said catalyst a diagnosis-gas atmosphere containing a target gas whose concentration is higher than said target gas during a steady-operation state of said internal combustion engine is performed in response to a fuel injection instructing signal from said electronic control element, and said electronic control element controls said fuel injection such that said fuel injection is executed at a timing of post-injection of said internal combustion engine. 2. The catalyst deterioration diagnosis method according to claim 1 , wherein when the concentration of said target gas in the vicinity on an upstream side of said catalyst in said exhaust path is denoted by Nu, the concentration of said target gas in the vicinity on a downstream side of said catalyst in said exhaust path is denoted by Nl, and a conversion rate defined by the following calculation formula is used as an index representing the degree of oxidation or adsorption occurring in said catalyst, Conversion rate (%)=100×( Nu−Nl )/ Nu, an allowable conversion rate range being a range of said conversion rate allowable in said catalyst is previously defined according to a possible temperature of said catalyst, a value of said Nl with respect to the possible temperature of said catalyst, which is calculated by substituting, into said calculation formula, a lower limit value of said allowable conversion rate range at the temperature as said conversion rate, and an upper limit value of a range of an upstream gas concentration during diagnosis being a possible concentration range of said diagnosis-gas atmosphere in the vicinity on an upstream side of said catalyst as said Nu, is defined as said threshold value, and said catalyst deterioration diagnosis method further comprises the steps of: c) measuring a temperature of said exhaust gas containing said target gas at said upstream side in response to an execution instruction instructing the execution of the diagnosis of deterioration of said catalyst, which is given at any timing when said internal combustion engine is in said state of a steady operation; d) generating said diagnosis-gas by injecting fuel from said internal combustion engine following said measurement of the exhaust gas temperature in said step c); e) detecting said target gas at the downstream from said catalyst in said exhaust path at the timing when said diagnosis-gas is discharged from said catalyst to calculate the concentration of said target gas at said downstream side based on the detected results; and f) diagnosing the degree of deterioration of said catalyst, based on the concentration of said target gas at said downstream side calculated in said gas concentration calculation step, the temperature of said catalyst identified based on a measurement value in said temperature measuring step, and said threshold value at the temperature of the catalyst, wherein in said step f), deterioration exceeding an acceptable level of a catalyst is determined not to occur in said catalyst when the concentration of said target gas calculated in said step e) is said threshold value or less, and deterioration exceeding an acceptable level of a catalyst is determined to occur in said catalyst when the concentration of said target gas calculated in said step e) is larger than said threshold value. 3. The catalyst deterioration diagnosis method according to claim 2 , wherein said step c), said step d), said step e) and said step f) are repeated in this order while adapting to generate a plurality of said diagnosis-gas atmospheres having different concentrations of said target gas by varying a total injection amount of said fuel in said step d) for every execution instruction sent. 4. The catalyst deterioration diagnosis method according to claim 3 , wherein a total injection amount of said fuel in said step d) is 15 mg or more and 130 mg or less. 5. The catalyst deterioration diagnosis method according to claim 4 , wherein a mixed-potential hydrocarbon gas sensor is used for detection of said target gas, said mixed-potential hydrocarbon gas sensor comprising a sensing electrode whose catalyst activity is disabled with said sensing electrode being formed of a Pt—Au alloy. 6. The catalyst deterioration diagnosis method according to claim 3 , wherein a mixed-potential hydrocarbon gas sensor is used for detection of said target gas, said mixed-potential hydrocarbon gas sensor comprising a sensing electrode whose catalyst activity is disabled with said sensing electrode being formed of a Pt—Au alloy. 7. The catalyst deterioration diagnosis method according to claim 2 , wherein a total injection amount of said fuel in said step d) is 15 mg or more and 130 mg or less. 8. The catalyst deterioration diagnosis method according to claim 7 , wherein a mixed-potential hydrocarbon gas sensor is used for detection of said target gas, said mixed-potential hydrocarbon gas sensor comprising a sensing electrode whose catalyst activity is disabled with said sensing electrode being formed of a Pt—Au alloy. 9. The catalyst deterioration diagnosis method according to claim 2 , wherein a mixed-potential hydrocarbon gas sensor is used for detection of said target gas, said mixed-potential hydrocarbon gas sensor comprising a sensing electrode whose catalyst activity is disabled with said sensing electrode being formed of a Pt—Au alloy. 10. The catalyst deterioration diagnosis method according to claim 1 , wherein a mixed-potential hydrocarbon gas sensor is used for detection of said target gas, said mixed-potential hydrocarbon gas sensor comprising a sensin

Assignees

Inventors

Classifications

  • the means being a temperature sensor · CPC title

  • by changing the composition of the exhaust gas, e.g. for exothermic reaction on exhaust gas treating apparatus · CPC title

  • Catalyst conversion efficiency · CPC title

  • Plural sensors · CPC title

  • Safety or indicating devices for abnormal conditions {(in air/fuel ratio feedback systems F02D41/1495, in electric control linkage F02D11/107, in purge control systems F02M25/0809)} · CPC title

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What does patent US10196958B2 cover?
A method for diagnosing the degree of deterioration of a catalyst disposed in an exhaust path of an internal combustion engine and oxidizes or adsorbs a target gas, including at least one of a hydrocarbon gas and a carbon monoxide gas in an exhaust gas from the internal combustion engine, is adapted to determine whether deterioration exceeding an acceptable level of a catalyst occurs or not by …
Who is the assignee on this patent?
Ngk Insulators Ltd
What technology area does this patent fall under?
Primary CPC classification F01N3/103. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Feb 05 2019 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).