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CATALYTIC OXIDATION OF GLUCOSE ON BISMUTH-PROMOTED PALLADIUM CATALYSTS

机译:铋促进的钯催化剂上葡萄糖的催化氧化

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Water solutions of glucose (1.66 mol liter(-1)) were oxidized with air at 313 K on palladium catalysts supported on active charcoal. High gluconate yields (99.3%) were obtained in the presence of bismuth-promoted catalysis. Bismuth was deposited via a surface redox reaction on Pd/C catalysts containing 1- to 2-nm Pd particles. A STEM-EDX study showed that bismuth atoms are selectively and homogeneously deposited on the palladium particles. The catalyst can be recycled without loss of activity and selectivity. Bismuth was not leached from the catalyst during reaction and recycling. Bismuth adatoms prevent oxygen poisoning of the palladium surface by acting as a co-catalyst in the oxidative dehydrogenation mechanism. It was determined by calorimetric measurements that oxygen should adsorb preferentially on bismuth rather than on palladium. (C) 1995 Academic Press, Inc. [References: 22]
机译:葡萄糖的水溶液(1.66 mol升(-1))在313 K上的空气中,被负载在活性炭上的钯催化剂氧化。在铋促进的催化作用下,获得了较高的葡萄糖酸盐收率(99.3%)。铋通过表面氧化还原反应沉积在含有1-2 nm Pd颗粒的Pd / C催化剂上。一项STEM-EDX研究表明,铋原子选择性且均匀地沉积在钯颗粒上。催化剂可以循环使用而不会损失活性和选择性。在反应和再循环期间,铋没有从催化剂中浸出。铋原子通过在氧化脱氢机理中充当助催化剂来防止钯表面的氧中毒。通过量热法测定确定氧应优先吸附在铋上而不是钯上。 (C)1995 Academic Press,Inc. [参考:22]

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