基于 Rh 的三元催化剂的最新进展

Ruize Jiang, Huilin Wang, Li Liu, Baokang Geng, Xiang Chu, Yi Shi, Xiao Wang, Shuyan Song, Hongjie Zhang
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摘要

三元催化器被广泛用于控制日益增多的汽油发动机的标准污染物排放。随着各国对汽车污染物排放标准的严格要求,Rh 因其优异的氮氧化物消除性能、高 N2 选择性以及同时消除 CO 和碳氢化合物的特性,已成为三元催化器中不可替代的组分。在这篇综述中,我们从潜在的支持物和有效的活性中心构建策略两个方面系统地回顾了 Rh 基三元催化器的最新发展。我们进一步总结了 Rh 金属在三元催化机理和反应动力学中的关键作用。最后,我们总结了 Rh 基催化剂目前面临的挑战和未来的机遇。相信基于对 Rh 基三元催化的深入理解,未来有望设计出低温催化性能好、成本低的 Rh 基催化剂。
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Recent progress of Rh‐based three‐way catalysts
Three‐way catalysts are widely used to control criterion pollutant emissions from the increasing gasoline engines. With the stringent requirements of automotive pollutant emission standards in various countries, Rh has become an irreplaceable component of three‐way catalysts due to its superior NOx elimination, high N2 selectivity, and simultaneous elimination of CO and hydrocarbons. In this review, we systematically review the recent development of Rh‐based three‐way catalysts in terms of potential supports and effective active center construction strategies. We further summarize the key role of Rh metal in the three‐way catalytic mechanism and reaction kinetics. Finally, we conclude the current challenges and future opportunities facing Rh‐based catalysts. It is believed that based on the deep understanding of Rh‐based three‐way catalysts, the design of Rh‐based catalysts with good low‐temperature catalytic performance and low cost is expected to be realized in the future.
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