Skip to content

Opening book details…

Can I read Novel manganese-based assembled nanocatalyst with “nitrous oxide filter” for efficient NH3-SCR in wide low-temperature window: Optimization, design and mechanism on EtoBox?

Novel manganese-based assembled nanocatalyst with “nitrous oxide filter” for efficient NH3-SCR in wide low-temperature window: Optimization, design and mechanism by Mengyao Bian; Kaijie Liu; Xinyu Han; Yangfei Fang; Qiuwen Liu; Yibo Zhang; Xiangguang Yang is a Engineering article available to read on EtoBox.

What is Novel manganese-based assembled nanocatalyst with “nitrous oxide filter” for efficient NH3-SCR in wide low-temperature window: Optimization, design and mechanism about?

It is still a challenge for de-NOx catalysts to have high activity and N2 selectivity in a wide low-temperature operating temperature window. In this work, we used layered zeolite-like montmorillonite as the support and then obtained a composite catalyst with satisfactory NOx conversion and excellent N2 selectivity in the temperature range of 100–300 °C with the method of pillaring modification, active component doping, and catalyst assembly. It has been proved that doping rare earth elements can improve the redox ability of the catalyst, and WO3 modification can enhance the acidity of the catalyst. The redox ability and the surface acidity of the catalyst system were balanced by assembling the WO3-modified catalyst and the WO3-unmodified catalyst. Besides, we found the composite Pr1Mn9/Fe7Ti3-Wu-mmt catalyst had the best catalytic activity and N2 selectivity only when the reaction gas first passed through the catalyst modified by WO3, in which the WO3-modified catalyst acted as the role of nitrous oxide filter. What’s more, according to the results of in situ DRIFTS, it can be indicated that the montmorillonite-supported catalysts in this work followed the L-H mechanism and E-R me

Who reads Novel manganese-based assembled nanocatalyst with “nitrous oxide filter” for efficient NH3-SCR in wide low-temperature window: Optimization, design and mechanism?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Mengyao Bian; Kaijie Liu; Xinyu Han; Yangfei Fang; Qiuwen Liu; Yibo Zhang; Xiangguang Yang
Publisher
Elsevier BV
Published
2023
Language
EN
Field
Engineering (Physical Sciences)