首页> 外文期刊>Environmental Science and Pollution Research >Fabrication of manganese-based Zr-Fe polymeric pillared interlayered montmorillonite for low-temperature selective catalytic reduction of NOx by NH3 in the metallurgical sintering flue gas
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Fabrication of manganese-based Zr-Fe polymeric pillared interlayered montmorillonite for low-temperature selective catalytic reduction of NOx by NH3 in the metallurgical sintering flue gas

机译:锰基Zr-Fe聚合物柱形夹层中间型蒙脱石在冶金烧结烟气中NH3的低温选择性催化还原NOx

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摘要

A series of Zr-Fe (Zr/Fe=4:0, 3:1, 2:2, 1:3, 0:4) polymeric pillared interlayered montmorillonite loading 10wt.% MnOx (Mn/Zr-Fe-PILM) were investigated for the selective catalytic reduction of NOx by NH3 (NH3-SCR) in metallurgical sintering flue gas. The X-ray diffraction (XRD), N-2 adsorption-desorption isotherm, scanning electron microscope (SEM), and ammonia temperature-programmed desorption (NH3-TPD) were used to analyze the physicochemical property. The Fe polymerized with Zr exchanged to montmorillonite can improve the Mn/Zr-Fe-PILM low-temperature NOx conversion and N-2 selectivity. The Mn/Zr-Fe-PILM (1:3) shows the highest NOx conversion between 140 and 180 degrees C. The XRD results suggest that the growth of crystalline ZrO2 phase is intensely restrained for the Fe2O3 migration into the ZrO2 lattice. The ZrO2 and MnOx have an excellent dispersion in montmorillonite. The N-2 adsorption result illustrates that the increase of Fe molar content in the Zr-Fe-PILM support increases the catalyst-specific surface area. The NH3-TPD results elucidate that the Mn/Zr-Fe-PILM (1:3) has the most total acid sites. Therefore, the low-temperature catalytic activity of the Mn/Zr-Fe-PILM (1:3) has been assigned to the large specific surface area, abundant acid sites, and the dispersion of metallic oxides.
机译:一系列Zr-Fe(Zr / Fe = 4:0,3:1,2:2,1:3,0:4)聚合物柱形夹层蒙脱石均可10wt。%MNOX(Mn / Zr-Fe-pillm)是研究了NH3(NH3-SCR)在冶金烧结烟道气中的NOx选择性催化还原。使用X射线衍射(XRD),N-2吸附 - 解吸等温线,扫描电子显微镜(SEM)和氨温度编程的解吸(NH3-TPD)分析物理化学性质。用Zr聚合的Fe与蒙脱石交换,可以改善Mn / Zr-Fe-pillm低温NOx转化率和N-2选择性。 Mn / Zr-Fe-pilm(1:3)显示了140和180摄氏度之间的最高NOx转化。XRD结果表明结晶ZrO2相的生长被强烈地抑制到ZrO2晶格中的Fe2O3迁移。 ZrO2和MNOX在蒙脱石中具有优异的分散体。 N-2吸附结果说明Zr-Fe-Pilm载体中Fe摩尔含量的增加增加了催化剂特异性表面积。 NH 3-TPD结果阐明Mn / Zr-Fe-pillm(1:3)具有最多的酸位点。因此,已将Mn / Zr-Fe-pillm(1:3)的低温催化活性分配给大的比表面积,丰富的酸位点和金属氧化物的分散体。

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