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Vanadium promoted molybdenum phosphate catalysts for the vapour phase partial oxidation of methanol to formaldehyde

机译:钒促进的磷酸钼催化剂,用于甲醇汽相部分氧化为甲醛

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摘要

The catalytic properties of (MoO2)2P2O7 promoted with vanadium have been investigated for the partial oxidation of methanol, and structure-activity relationships probed using a range of characterization techniques. All unpromoted and promoted molybdenum phosphate catalysts were active, with higher vanadium content achieving both high activity and high formaldehyde selectivity at reaction temperatures around 400 °C. The association between increasing vanadium content and the enhanced activity towards methanol oxidation was attributed to the formation of mixed phase catalysts, in particular VOHPO4·0.5H2O/VOPO4·2H2O with (MoO2)2P2O7. The dispersion of vanadium phosphate phases on the surface of (MoO2)2P2O7 was found to substantially enhance the catalytic properties of the molybdenum phosphate catalyst. The data from this study indicate that molybdenum phosphate based catalysts are promising candidates for selective oxidation, and hence worthy of further investigation.
机译:研究了钒促进的(MoO2)2P2O7催化甲醇部分氧化的性质,并使用一系列表征技术探讨了结构活性关系。所有未促进和促进的磷酸钼催化剂都具有活性,钒的含量更高,在约400°C的反应温度下既具有高活性,又具有高甲醛选择性。钒含量增加与甲醇氧化活性增强之间的联系归因于混合相催化剂的形成,特别是具有(MoO2)2P2O7的VOHPO4·0.5H2O / VOPO4·2H2O。发现磷酸钒相在(MoO 2)2 P 2 O 7的表面上的分散基本上增强了磷酸钼催化剂的催化性能。这项研究的数据表明,基于磷酸钼的催化剂有望成为选择性氧化的候选物,因此值得进一步研究。

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