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Mesoporous Mn-Ti amorphous oxides: a robust low-temperature NH3-SCR catalyst

机译:介孔Mn-Ti无定形氧化物:一个健壮的低温NH3-SCR催化剂

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摘要

A series of mesoporous Mn-Ti amorphous oxides (MnaTi1-a) fabricated by a combined strategy of in situ deposition and freeze-drying were studied for the selective catalytic reduction of NO with NH3 (NH3-SCR) at low temperature. The physico-chemical properties of MnaTi1-a catalysts were characterized systematically by XRD, TEM, Raman, EXAFS, N-2-sorption, XPS, H-2-TPR and NH3-TPD. The results revealed that the increased amount of Mn4+ species greatly promoted the NO conversion at low temperature. Additionally, the highly dispersed active sites, abundant surface Lewis acid sites and strong interaction between Mn and Ti contributed to the remarkable low-temperature SCR activity. Among these MnaTi1-a catalysts, the Mn0.5Ti0.5 catalyst exhibited the best low-temperature NH3-SCR performance (61% NO conversion at 100 degrees C and over 95% N-2 selectivity at 150-250 degrees C) and excellent H2O/SO2 durability. In situ FTIR was used to investigate the reaction mechanism, and the results indicated that both the L-H and E-R mechanisms were present and NH3-SCR mainly proceeded via the L-H reaction pathway at low temperature.
机译:一系列的介孔Mn-Ti无定形氧化物(MnaTi1-a)捏造的组合策略原位沉积和冷冻干燥法进行了研究选择性催化还原的没有低温氨(NH3-SCR)。MnaTi1-a催化剂的物理化学性质系统特征通过XRD, TEM,拉曼、EXAFS、N-2-sorption XPS, H-2-TPR和NH3-TPD。Mn4 +物种的数量大大促进了没有低温转换。高度分散的活跃的网站,丰富的表面路易斯酸网站和强烈的相互作用锰和钛的显著低温SCR活动。MnaTi1-a催化剂,Mn0.5Ti0.5催化剂最好的低温NH3-SCR展出性能(61%没有在100摄氏度转换和超过95%的n - 2选择性在150 - 250度C)和优秀的H2O / SO2耐久性。被用来研究反应机理,结果表明,L-H和e - r在场,NH3-SCR主要机制接着通过L-H反应途径较低温度。

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