School of Environment & Natural Resources , Renmin University of China , Beijing 100872 , China.
State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment , Tsinghua University , Beijing , 100084 , China.
Environ Sci Technol. 2018 Apr 17;52(8):4802-4808. doi: 10.1021/acs.est.8b00267. Epub 2018 Apr 5.
One-pot synthesized Cu-SSZ-13 catalyst treated with dilute HNO achieved superior activity and selectivity in the selective catalytic oxidation (SCO) of NH to nitrogen, in comparison with other zeolite-based catalysts and most of metal-oxide catalysts. Furthermore, the catalyst showed the similar or even higher catalytic activity than the partial noble-metal catalysts, and meanwhile its N selectivity was superior to most noble-metal catalysts. The characterization results demonstrated that more Cu ions existing in Cu-SSZ-13 catalyst were advantageous to its NH-SCO activity. The in situ DRIFTS results indicated that the reactivity of NH species adsorbed on Lewis and Brønsted acid sites over Cu-SSZ-13-O-H catalyst depended on the reaction temperature. The results of this study suggest the one-pot synthesized Cu-SSZ-13 is a promising NH-SCO catalyst for practical application, either mobile or stationary pollution sources.
一锅法合成的经稀硝酸处理的 Cu-SSZ-13 催化剂在 NH 选择性催化氧化(SCO)为氮气的反应中表现出了优于其他沸石基催化剂和大多数金属氧化物催化剂的活性和选择性。此外,与部分贵金属催化剂相比,该催化剂表现出相似甚至更高的催化活性,同时其 N 选择性优于大多数贵金属催化剂。表征结果表明,Cu-SSZ-13 催化剂中存在更多的 Cu 离子有利于其 NH-SCO 活性。原位 DRIFTS 结果表明,Lewis 和 Brønsted 酸位上吸附的 NH 物种的反应活性取决于反应温度。本研究结果表明,一锅法合成的 Cu-SSZ-13 是一种很有前途的 NH-SCO 催化剂,可用于移动或固定污染源的实际应用。