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Understanding the impact of promoters on enhancing and inhibiting the sulphur resistance and regeneration of supported Pd catalysts for complete methane oxidation

作者:Abubakar Yusuf, Yong Ren, Yun Liu, Li Shi, Zhiyu Xiao, Run Pan, Zheng Wang, Hainam Do, Jian‐Rong Li, Jun He · 发表于:Chemical Engineering Journal · 年份:2025 · DOI:10.1016/j.cej.2025.161187 · 被引用次数:8 · 研究领域:Catalytic Processes in Materials Science、Catalysis and Oxidation Reactions、Industrial Gas Emission Control

• ZrO 2 enhances Pd catalyst sulfur resistance, improving methane oxidation under SO 2 conditions. • CeO 2 and TiO 2 promoters facilitate bulk sulfate formation, inhibiting catalytic regeneration. • Wet reducing regeneration fully recovers ZrO 2 -Pd activity, outperforming H 2 treatment. • Sulfate stability on catalysts affects regeneration efficiency, with ZrO 2 showing best results. The efficient treatment of methane emissions from natural gas-powered engines is necessary due to the high potency and global warming potential of methane. Promoters are often employed to enhance catalysts’ performance and stability for methane oxidation. It is therefore important to understand the impact of promoters on Pd activity, especially under practically relevant conditions. Here, we report the enhancement and inhibition effect of promoters (ZrO 2 , CeO 2 , and TiO 2 ) on the sulfur resistance and regeneration of alumina-supported Pd catalysts for complete methane oxidation in the presence and absence of moisture. The type of promoter employed and the presence of moisture influence the type of sulfur species formed on the alumina-supported Pd catalysts, as well as their catalytic performance and regeneration. Whereas ZrO 2 enhances both the activity and SO 2 resistance and enhances the regeneration of the poisoned catalysts under both dry and wet reaction conditions, more stable sulfate species are formed in the presence of CeO 2 and TiO 2 , inhibiting both the catalysts’ performance and...