This research aims to explore the tolerance of copper-doped mordenite to poisoning effects in methane conversion applications.
Chemical interference effects were tested using a copper-doped mordenite catalyst against various interferents.
Performance metrics for methane conversion were measured under conditions simulating typical emissions scenarios.
Copper-doped mordenite maintained high conversion rates despite exposure to anticipated interferents, with efficiency metrics surpassing 80%.
The catalyst exhibited a robust tolerance to poisoning, reducing emissions significantly under various test conditions.
Abstract
Catalytic approaches have shown promise for methane conversion, but tolerance to poisoning by anticipated interferents in target applications must be demonstrated.