Study on the formation process of MoO 3 /Fe 2 (MoO 4 ) 3 by mechanochemical synthesis and their catalytic performance in methanol to formaldehyde

JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY(2020)

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摘要
Mechanochemical method has applied to the green preparation of iron-molybdenum catalyst efficiently, and their catalytic performance was evaluated by the oxidation of methanol to formaldehyde. In order to investigate the formation process of iron-molybdenum catalyst based on mechanochemical method, various characterization techniques have been employed. Results indicate that iron-molybdenum catalyst could not be generated during ball milling process without calcining, and calcination is crucial step to regulate the ratio of MoO 3 and Fe 2 (MoO 4 ) 3 . For the formation of MoO 3 and Fe 2 (MoO 4 ) 3 phase, 180 °C could be the key turning temperature point. Fe 2 (MoO 4 ) 3 and MoO 3 phases are concurrently emerged when Mo/Fe atomic ratio exceeds 1.5. The aggregation of Fe 2 (MoO 4 ) 3 is severe with the increasing calcination temperature. Fe 2 (MoO 4 ) 3 is stable below 600 °C, while MoO 3 phase could be subliming with the increasing temperature. The catalytic performance of iron-molybdenum catalyst has closely correlation with the phase compositions, which can be controlled by synthesis temperature and Mo/Fe molar ratio. The iron-molybdenum catalyst with Mo/Fe atomic ratio of 2.6 calcined at 500 °C for 4 h showed the best methanol conversion (100%) and formaldehyde yield (92.27%).
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关键词
Iron molybdate catalyst,Mechanochemical synthesis,Calcination temperature,Mo,Fe ratio,Methanol to formaldehyde
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