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Mn-containing catalytic materials for the total combustion of toluene:The role of Mn localisation in the structure of LDH precursor

机译:甲苯完全燃烧的含锰催化材料:锰局部化在LDH前体结构中的作用

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摘要

Mg/Mn/Al mixed oxide systems of similar atomic ratios close to 2/0.5/1 were obtained by calcination of Mg,Al layered double hydroxide (LDH)type precursors containing Mn either in the cationic form within the brucite layer or as permanganate anions in the interlayer.The materials were characterised with PXRD,thermal analysis,XPS,ESR,TPR and BET.In mixed oxides derived from interlayer-doped precursor PXRD identified MgO-MnO solid solution and poorly crystalline Al-rich spinel phase,while those obtained from layer-doped LDH contained a better crystalline Mn-rich spinel.Surface of both materials was covered with poorly crystalline and/or amorphous Mn~(4+)-containing phases.Higher reducibility of this surface coat in calcined layer-doped catalyst,as compared to interlayer-doped one,was attributed to the differences in the nature of underlying crystalline phases,and was considered the chief reason for the higher catalytic activity of this catalyst in the total oxidation of toluene.
机译:通过煅烧水镁石层中阳离子形式或以锰酸盐形式含锰的Mg,Al层状双氢氧化物(LDH)型前驱体,可得到相似原子比接近2 / 0.5 / 1的Mg / Mn / Al混合氧化物体系。通过PXRD,热分析,XPS,ESR,TPR和BET对材料进行了表征。在层间掺杂的前驱体衍生的混合氧化物中,PXRD鉴定出MgO-MnO固溶体和贫结晶的富Al尖晶石相,而得到的层掺杂的LDH中含有更好的结晶富锰尖晶石,两种材料的表面都覆盖有较弱的结晶和/或非晶态的Mn〜(4+)相,在煅烧的掺杂层催化剂中该表面涂层的还原性更高,与层间掺杂相比,这归因于下层结晶相性质的差异,被认为是该催化剂在甲苯总氧化中具有较高催化活性的主要原因。

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