催化作用
还原(数学)
选择性催化还原
材料科学
化学
化学工程
有机化学
工程类
几何学
数学
作者
Yanmei Kong,Wenjing He,Longlong Zhang,Meihua Zhu,Shuanghua Cheng,Huasheng Lin,Li Lan,Shanhu Chen,Chuanjie Cheng,Liang Shen
摘要
Abstract Passive selective catalytic reduction (pSCR) is a promising technology for exhaust aftertreatment applied in lean burn gasoline engines, which requires the three‐way catalyst (TWC) to provide NH 3 for the downstream SCR reaction process. Consequently, in the assessment of TWC catalytic performance for pSCR operation, not only the conversion efficiency of CO, HC, and NO should be taken into account, but the generation of NH 3 is equally crucial. In this study, the modification of Pd/Al 2 O 3 catalyst was realized with the assistance of SrO, and the catalytic performance in terms of both the conversion efficiency of CO/HC/NO and the production of NH 3 was measured. Additionally, the physicochemical characteristics of the SrO‐modified catalysts were evaluated in comparison to those of the unmodified Pd/Al 2 O 3 through various analytic techniques. The findings indicate that incorporating SrO into the Pd/Al 2 O 3 system enhances the conversion efficiency for CO, HC, and NO, and more importantly, a larger generation of NH 3 is achieved, and the most effective concentration of SrO is identified as 4 wt.%. Based on the characterization results, it is found that SrO mainly interacts with tetra‐coordinated or penta‐coordinated Al sites on the surface of the catalyst, which brings about weakened surface acidity. The beneficial effect of SrO is primarily linked to its capacity to enhance the thermal durability of the Al 2 O 3 support, facilitate the distribution of Pd‐related particles, and adjust the chemical states of Pd species. Additionally, it could modify the reduction characteristics and the desorption performance of NH 3 over the catalyst.
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