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Direct Methyl Formate Formation from Methanol over Supported Palladium Nanoparticles at Low Temperature

机译:在低温下在负载型钯纳米颗粒上直接甲基甲酸甲酯形成

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摘要

Palladium nanoparticles of different sizes and supported on TiO2 (2 wt.%) were synthesized by using the water-in-oil microemulsion method. The control of palladium nanoparticles was investigated in terms of the nature of organic surfactant and solvent. Attention was paid to the reduction of palladium ions in solution during synthesis. Materials were characterized by N-2-BET at low temperature, XRD, XPS, H-2 chemisorption, and TEM and were tested in the gas phase oxidation of methanol. The results confirmed the effect of microemulsion composition on the size of palladium nanoparticles. The direct formation of methyl formate from methanol was observed. Supported palladium catalysts produced methyl formate at low temperature (<150 degrees C) with a very high selectivity, and, in some cases, a selectivity of approximately 100%. At higher temperature, methyl formate is not formed at all and the total oxidation to CO2 occurs. A linear correlation between palladium particle size and methanol conversion was observed. Conversion and selectivity were correlated with the acidity of the catalysts. Very small particles were more active but less selective. A mechanism was proposed to explain the formation of methyl formate from methanol.
机译:通过使用水包油微乳液法合成不同尺寸的钯纳米粒子和TiO 2(2重量%)。根据有机表面活性剂和溶剂的性质研究了对钯纳米颗粒的控制。在合成期间溶液中钯离子的减少支付注意。在低温,XRD,XPS,H-2化学吸附和TEM下的N-2骤注以N-2赌注为特征在于,并在甲醇的气相氧化中测试。结果证实了微乳液组合物对钯纳米粒子尺寸的影响。观察到来自甲醇的甲酸甲酯的直接形成。支撑的钯催化剂在低温(<150℃)下产生甲基甲酯,具有非常高的选择性,在某些情况下,选择性约为100%。在较高温度下,根本不形成甲基甲酸甲酯,并且对CO 2的总氧化发生。观察钯粒度与甲醇转化之间的线性相关性。转化和选择性与催化剂的酸度相关。非常小的颗粒更活跃但选择性较少。提出了一种机理来解释从甲醇的形成甲酸甲酯。

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