首页> 外文期刊>Catalysis Letters >Switching Between Oxidation Types Using Molybdenum Phosphate Catalysts for Paraffin Activation Using Doped Fe as Surface Acidity Modifier and MoOx as an Oxygen Insertion Tool
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Switching Between Oxidation Types Using Molybdenum Phosphate Catalysts for Paraffin Activation Using Doped Fe as Surface Acidity Modifier and MoOx as an Oxygen Insertion Tool

机译:使用掺杂Fe作为表面酸度改性剂和MOOX作为氧气插入工具,使用钼磷酸盐催化剂在氧化型催化剂之间切换氧化物催化剂。作为氧气插入工具

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A comparative study of the activation of n-hexane over 12-molybdophopshoric acid (H3PMo12O40 or HPA), Fe3+ doped HPA (Fe0.69H0.93PMo12O40) and an iron phosphate catalyst (P/Fe = 1.22) was carried out. The Fe doped HPA catalyst is thermally more stable and less acidic than the unmodified HPA catalyst. The HPA and the Fe doped HPA catalysts both catalytically produced 2,5-dimethyltetrahydrofuran and 2,5-hexadione (oxygenates), with the Fe doped HPA catalyst selectively producing more oxygenates than the HPA catalyst. The iron phosphate catalyst produced cis-2-hexene and 1-hexene but no oxygenates, which implies that the iron phosphate catalyst promotes dehydrogenation, but not oxygen insertion. At 360 degrees C, the HPA catalyst initiated benzene formation reactions. At isoconversion of ca. 8% under isothermal conditions, the iron phosphate catalyst gave the highest selectivity (72%) towards benzene, which may have formed through both catalytic and non-catalytic reactions. In contrast, the Fe doped HPA catalyst showed a lower benzene selectivity than the HPA catalyst with a corresponding increase in cyclic oxygenates. Graphic
机译:进行12型钼酸(H3PMO12O40或HPA),Fe3 +掺杂HPA(Fe0.69H0.93PMO12O40)和铁磷酸铁催化剂(P / Fe = 1.22)对N-己烷活化的对比研究。 Fe掺杂的HPA催化剂比未修饰的HPA催化剂热更稳定且酸性较少。 HPA和Fe掺杂的HPA催化剂均应地制备2,5-二甲基四氢呋喃和2,5-十六烷酸酯(含氧化合物),用Fe掺杂的HPA催化剂选择性地产生比HPA催化剂更多的含氧化合物。铁磷酸铁催化剂制备顺式-2-己烯和1-己烯,但不含含氧化合物,这意味着铁磷酸铁催化剂促进脱氢,但不氧插入。在360℃下,HPA催化剂引发苯形成反应。在CA的Isoconversion。在等温条件下8%,铁磷酸铁催化剂朝向苯的最高选择性(72%),其可以通过催化和非催化反应形成。相反,Fe掺杂的HPA催化剂显示出比HPA催化剂的苯选择率低,相应的环状含氧化合物增加。形象的

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