SAE International Engine Test for DOC Quenching in DOC-DPF System for Non-Road Applications 2010-01-0815

Description
The use of a diesel oxidation catalyst (DOC) in conjunction with a diesel particulate filter (DPF) is now a well-established aftertreatment system design for on-road heavy duty diesel. For non-road applications, the DOC must respond to the need for performance under more diverse and less favorable conditions, such as operation at low loads in cold weather. To choose a DOC technology for such applications, one must have practical and meaningful tests that address the specific catalytic functions of interest such as hydrocarbon oxidation to produce heat for regenerating DPF. This paper describes the development of an engine test protocol that focuses on resistance to the phenomenon known as quenching, the cessation of hydrocarbon (HC) oxidation that occurs when the exhaust temperature decreases below the light-off temperature of the catalyst. During development, the sensitivity and repeatability of the test were carefully scrutinized. As a result, the test clearly discriminates between catalysts with different platinum group metal (PGM) definitions (loading and ratio), as well as between different aging durations and types (on-engine vs. hydrothermal oven aging).
Description
The use of a diesel oxidation catalyst (DOC) in conjunction with a diesel particulate filter (DPF) is now a well-established aftertreatment system design for on-road heavy duty diesel. For non-road applications, the DOC must respond to the need for performance under more diverse and less favorable conditions, such as operation at low loads in cold weather. To choose a DOC technology for such applications, one must have practical and meaningful tests that address the specific catalytic functions of interest such as hydrocarbon oxidation to produce heat for regenerating DPF. This paper describes the development of an engine test protocol that focuses on resistance to the phenomenon known as quenching, the cessation of hydrocarbon (HC) oxidation that occurs when the exhaust temperature decreases below the light-off temperature of the catalyst. During development, the sensitivity and repeatability of the test were carefully scrutinized. As a result, the test clearly discriminates between catalysts with different platinum group metal (PGM) definitions (loading and ratio), as well as between different aging durations and types (on-engine vs. hydrothermal oven aging).

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Engine Test for DOC Quenching in DOC-DPF System for Non-Road Applications - 2010-01-0815 - SAE International
Warrendale, PA, United States
Engine Test for DOC Quenching in DOC-DPF System for Non-Road Applications
2010-01-0815
Engine Test for DOC Quenching in DOC-DPF System for Non-Road Applications 2010-01-0815
The use of a diesel oxidation catalyst (DOC) in conjunction with a diesel particulate filter (DPF) is now a well-established aftertreatment system design for on-road heavy duty diesel. For non-road applications, the DOC must respond to the need for performance under more diverse and less favorable conditions, such as operation at low loads in cold weather. To choose a DOC technology for such applications, one must have practical and meaningful tests that address the specific catalytic functions of interest such as hydrocarbon oxidation to produce heat for regenerating DPF. This paper describes the development of an engine test protocol that focuses on resistance to the phenomenon known as quenching, the cessation of hydrocarbon (HC) oxidation that occurs when the exhaust temperature decreases below the light-off temperature of the catalyst. During development, the sensitivity and repeatability of the test were carefully scrutinized. As a result, the test clearly discriminates between catalysts with different platinum group metal (PGM) definitions (loading and ratio), as well as between different aging durations and types (on-engine vs. hydrothermal oven aging).

The use of a diesel oxidation catalyst (DOC) in conjunction with a diesel particulate filter (DPF) is now a well-established aftertreatment system design for on-road heavy duty diesel. For non-road applications, the DOC must respond to the need for performance under more diverse and less favorable conditions, such as operation at low loads in cold weather. To choose a DOC technology for such applications, one must have practical and meaningful tests that address the specific catalytic functions of interest such as hydrocarbon oxidation to produce heat for regenerating DPF. This paper describes the development of an engine test protocol that focuses on resistance to the phenomenon known as quenching, the cessation of hydrocarbon (HC) oxidation that occurs when the exhaust temperature decreases below the light-off temperature of the catalyst. During development, the sensitivity and repeatability of the test were carefully scrutinized. As a result, the test clearly discriminates between catalysts with different platinum group metal (PGM) definitions (loading and ratio), as well as between different aging durations and types (on-engine vs. hydrothermal oven aging).

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  SAE International
Product Category Standards and Technical Documents
Product Number 2010-01-0815
Product Name Engine Test for DOC Quenching in DOC-DPF System for Non-Road Applications
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