4.6 Article Retracted Publication

被撤回的出版物: Effect of Bimetal Element Doping on the Low-Temperature Activity of Manganese-Based Catalysts for NH3-SCR (Retracted article. See vol. 11, 2023)

Journal

FRONTIERS IN CHEMISTRY
Volume 10, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fchem.2022.957051

Keywords

NH3-SCR; sulfur resistance; nitrogen oxide; metal modification; low temperature

Funding

  1. National Natural Science Foundation of China [U1504217, 51306046, 51676064]

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Novel Mn6Zr1-xCox denitrification catalysts were prepared by the co-precipitation method. The co-modification of MnOx catalyst by zirconium and cobalt significantly improved the performance of NH3-SCR, with the Mn6Zr0.3Co0.7 catalyst achieving over 90% NOx conversion in a reaction temperature range of 100-275 degrees C and up to 99% in the best case. Additionally, the Mn6Zr0.3Co0.7 catalyst exhibited excellent resistance to sulfur and water.
A series of novel Mn6Zr1-xCox denitrification catalysts were prepared by the co-precipitation method. The effect of co-modification of MnOx catalyst by zirconium and cobalt on the performance of NH3-SCR was studied by doping transition metal cobalt into the Mn6Zr1 catalyst. The ternary oxide catalyst Mn6Zr0.3Co0.7 can reach about 90% of NOx conversion in a reaction temperature range of 100-275 degrees C, and the best NOx conversion can reach up to 99%. In addition, the sulfur resistance and water resistance of the Mn6Zr0.3Co0.7 catalyst were also tested. When the concentration of SO2 is 200ppm, the NOx conversion of catalyst Mn6Zr0.3Co0.7 is still above 90%. 5 Vol% H2O has little effect on catalyst NOx conversion. The results showed that the Mn6Zr0.3Co0.7 catalyst has excellent resistance to sulfur and water. Meanwhile, the catalyst was systematically characterized. The results showed that the addition of zirconium and cobalt changes the surface morphology of the catalyst. The specific surface area, pore size, and volume of the catalyst were increased, and the reduction temperature of the catalyst was decreased. In conclusion, the doping of zirconium and cobalt successfully improves the NH3-SCR activity of the catalyst.

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