2018
DOI: 10.1016/j.apsusc.2017.08.088
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Low temperature NH3-SCR of NO over an unexpected Mn-based catalyst: Promotional effect of Mg doping

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Cited by 63 publications
(14 citation statements)
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“…Given that the dispersion of two active components on support enhances the active sites further, researchers have been widely reported the supported binary transition metal-based oxides to improve the performance and SO 2 /H 2 O tolerance in NH 3 -SCR reaction. With this perspective, several composites, such as MnCe/CNTs [118], Mn-Fe/TiO 2 [119], MnO x -CeO 2 /graphene [120], Mg-MnO x /TiO 2 [121], CeO x -MnO x /TiO 2 -graphene [122], Fe-Mn/Al 2 O 3 [123], Mn-Fe/W-Ti [124], MnO x -CeO 2 /TiO 2 -1%NG (NG = N-doped grapheme) [125], Mn-Ce/CeAPSO-34 [126], etc., were investigated for the NH 3 -SCR reaction at low-temperature. Smirniotis et al [22] studied the promotional effect of co-doped metals (Cr, Fe, Co, Ni, Cu, Zn, Ce, and Zr) on the NH 3 -SCR performance of Mn/TiO 2 .…”
Section: Supported Binary and Multi Transition Metal-based Catalystsmentioning
confidence: 99%
“…Given that the dispersion of two active components on support enhances the active sites further, researchers have been widely reported the supported binary transition metal-based oxides to improve the performance and SO 2 /H 2 O tolerance in NH 3 -SCR reaction. With this perspective, several composites, such as MnCe/CNTs [118], Mn-Fe/TiO 2 [119], MnO x -CeO 2 /graphene [120], Mg-MnO x /TiO 2 [121], CeO x -MnO x /TiO 2 -graphene [122], Fe-Mn/Al 2 O 3 [123], Mn-Fe/W-Ti [124], MnO x -CeO 2 /TiO 2 -1%NG (NG = N-doped grapheme) [125], Mn-Ce/CeAPSO-34 [126], etc., were investigated for the NH 3 -SCR reaction at low-temperature. Smirniotis et al [22] studied the promotional effect of co-doped metals (Cr, Fe, Co, Ni, Cu, Zn, Ce, and Zr) on the NH 3 -SCR performance of Mn/TiO 2 .…”
Section: Supported Binary and Multi Transition Metal-based Catalystsmentioning
confidence: 99%
“…The peaks observed at 361°C could be ascribed to the reduction of MnO 2 to Mn 2 O 3 , and those observed at 480°C represented the combined reduction of Mn 2 O 3 to Mn 3 O 4 and of Eu 2 O 3 to EuO. [52] For the MnÀ EuÀ Fe(1)-y catalysts, the reduction peaks moved to lower temperatures than those observed for the MnÀ Eu-550 catalyst. It is widely accepted that lower reduction temperatures denoted to stronger redox properties.…”
Section: Resultsmentioning
confidence: 80%
“…After doping metal oxides, two bigger and broader peaks appeared at medium and high temperature ranges were observed in modified BACs, revealing that loading Mn or La species could contribute to more surface acid sites. In which medium temperature peaks were in line with Brønsted acid sites, whilst high temperature peaks belonged to Lewis acid sites (Lónyi et al, 1996;Gu et al, 2010;Fang et al, 2018). It was conjectured that Brønsted acid sites might be stemmed from surface hydroxyl groups (Gu et al, 2010;Ma et al, 2015b), while Lewis acid sites possibly originated from unsaturated metal sites (Gu et al, 2010;Zhu et al, 2017).…”
Section: Nh3-tpd Analysismentioning
confidence: 99%