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添加过渡金属(Cr、Zr、Mo)对 MnOx-FeOx 催化剂低温选择性催化还原 NOx 性能的影响。

Influence of the addition of transition metals (Cr, Zr, Mo) on the properties of MnOx-FeOx catalysts for low-temperature selective catalytic reduction of NOx by Ammonia.

机构信息

Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, Nanjing 210096, PR China.

Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, Nanjing 210096, PR China.

出版信息

J Colloid Interface Sci. 2013 Feb 15;392:319-324. doi: 10.1016/j.jcis.2012.10.002. Epub 2012 Oct 22.

Abstract

The co-precipitation and citric acid methods were employed to prepare MnO(x)-FeO(x) catalysts for the low-temperature selective catalytic reduction (SCR) of NO(x) by ammonia. It was found that the Mn-Fe (CP) sample obtained from the co-precipitation method, which exhibited low crystalline of manganese oxides on the surface, high specific surface area and abundant acid sites at the surface, had better catalytic activity. The effects of doping different transition metals (Mo, Zr, Cr) in the Mn-Fe (CP) catalysts were further investigated. The study suggested that the addition of Cr can obviously reduce the take-off temperature of Mn-Fe catalyst to 90°C, while the impregnation of Zr and Mo raised that remarkably. The texture and micro-structure analysis revealed that for the Cr-doped Mn-Fe catalysts, the active components had better dispersion with less agglomeration and sintering and the largest BET surface specific area. In situ FTIR study indicated that the addition of Cr can increase significantly the surface acidity, especially, the Lewis acid sites, and promote the formation of the intermediate -NH(3)(+). H(2)-TPR results confirmed the better low-temperature redox properties of Mn-Fe-Cr.

摘要

采用共沉淀和柠檬酸法制备了 MnO(x)-FeO(x) 催化剂,用于氨低温选择性催化还原(SCR)NO(x)。研究发现,通过共沉淀法获得的 Mn-Fe(CP)样品表面 Mn 氧化物结晶度低、比表面积高、表面酸位丰富,具有更好的催化活性。进一步考察了在 Mn-Fe(CP)催化剂中掺杂不同过渡金属(Mo、Zr、Cr)的效果。研究表明,Cr 的添加可明显将 Mn-Fe 催化剂的起活温度降低到 90°C,而 Zr 和 Mo 的浸渍则显著提高了起活温度。结构和微观结构分析表明,对于 Cr 掺杂的 Mn-Fe 催化剂,活性成分具有更好的分散性,团聚和烧结程度较低,BET 比表面积最大。原位 FTIR 研究表明,Cr 的添加可显著增加表面酸度,特别是 Lewis 酸位,并促进中间产物 -NH(3)(+)H(2)-TPR 结果证实了 Mn-Fe-Cr 具有更好的低温氧化还原性能的形成。

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