LAPSE:2023.35943
Published Article

LAPSE:2023.35943
Ageing Studies of Pt- and Pd-Based Catalysts for the Combustion of Lean Methane Mixtures
June 7, 2023
Abstract
This paper presents results obtained for the thermal and hydrothermal ageing of seven commercial precious metals-based catalysts for the combustion of methane. Experiments are performed in a large excess of oxygen representing lean conditions. Temperatures used are those typically found in lean burn compression ignition engines. The precious metals used were platinum, palladium and rhodium, present either singly or in combination. The most active catalyst contains a platinum and palladium mixture, with palladium being dominant. This catalyst was also the least affected by both thermal and hydrothermal ageing. The second most active catalyst contained only palladium, but this catalyst also demonstrated more susceptibility to ageing. The least active catalyst contained only platinum, although this catalyst was also the least affected by hydrothermal ageing. The addition of rhodium to either palladium or platinum−palladium catalysts caused a more rapid loss in activity at higher temperatures, although the loss in activity at lower temperatures was similar in magnitude to those catalysts without rhodium. In some cases, cycling the reactor temperature between high and low restored some activity to the catalyst. In all cases, the catalyst activity was observed to be lower in the presence of water, after both thermal and hydrothermal ageing.
This paper presents results obtained for the thermal and hydrothermal ageing of seven commercial precious metals-based catalysts for the combustion of methane. Experiments are performed in a large excess of oxygen representing lean conditions. Temperatures used are those typically found in lean burn compression ignition engines. The precious metals used were platinum, palladium and rhodium, present either singly or in combination. The most active catalyst contains a platinum and palladium mixture, with palladium being dominant. This catalyst was also the least affected by both thermal and hydrothermal ageing. The second most active catalyst contained only palladium, but this catalyst also demonstrated more susceptibility to ageing. The least active catalyst contained only platinum, although this catalyst was also the least affected by hydrothermal ageing. The addition of rhodium to either palladium or platinum−palladium catalysts caused a more rapid loss in activity at higher temperatures, although the loss in activity at lower temperatures was similar in magnitude to those catalysts without rhodium. In some cases, cycling the reactor temperature between high and low restored some activity to the catalyst. In all cases, the catalyst activity was observed to be lower in the presence of water, after both thermal and hydrothermal ageing.
Record ID
Keywords
catalytic combustion, fugitive emissions, lean burn, natural gas engine
Subject
Suggested Citation
Istratescu GM, Hayes RE. Ageing Studies of Pt- and Pd-Based Catalysts for the Combustion of Lean Methane Mixtures. (2023). LAPSE:2023.35943
Author Affiliations
Istratescu GM: Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB T6G 2G6, Canada
Hayes RE: Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB T6G 2G6, Canada
Hayes RE: Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB T6G 2G6, Canada
Journal Name
Processes
Volume
11
Issue
5
First Page
1373
Year
2023
Publication Date
2023-05-01
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr11051373, Publication Type: Journal Article
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Published Article

LAPSE:2023.35943
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https://doi.org/10.3390/pr11051373
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[v1] (Original Submission)
Jun 7, 2023
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Jun 7, 2023
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https://psecommunity.org/LAPSE:2023.35943
Record Owner
Calvin Tsay
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