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Liquid-phase catalytic oxidation of benzyl alcohol to benzyl aldehyde With Fe/La-HMS

机译:用Fe / La-HMS对苄醇对苄醛液相催化氧化

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Fe/La-HMS was in situ techniques synthesized by using sol-gel method at room temperature, and was characterized by XRD, SEM, H2-TPR and N2 adsorption measurements. Without any organic solvent, the catalyst was used in selective oxidation of benzyl alcohol with 30 % aqueous hydrogen dioxide as the oxidant, and the effects of the amount of metal doping, reaction time, reaction temperature, catalyst dosage and dosage of oxidant on the oxidation of benzyl alcohol were examined. The results show that partial Fe3+ and La3+ ions were incorporated into the framework of HMS partially, and Fe/La-HMS had a uniform mesoporous structure. And at 80°C, when n(H2O2)/n(benzyl alcohol)=2∶1, n(Fe)/n(La)=10∶1, catalyst dosage 3 % and reaction time 4 h, the conversion of benzyl alcohol and the selectivity of benzyl aldehyde reached 63.8 % and 92.2 %. At the same time, catalytic activity does not change after using three times.
机译:Fe / La-HMS是通过在室温下使用溶胶 - 凝胶法合成的原位技术,其特征在于XRD,SEM,H 2 -TPR和N 2 吸附测量。没有任何有机溶剂,催化剂用于苄醇的选择性氧化,其二氧化氢水为氧化剂,以及金属掺杂量,反应时间,反应温度,催化剂剂量和氧化剂剂量对氧化的影响检查苄醇。结果表明,部分Fe 3 + 和La 3 + 离子部分地掺入了HMS的框架中,并且Fe / La-HMS具有均匀的介孔结构。在80° c,当n(h 2 o 2 )/ n(苄醇)= 2∶ 1,n(fe)/ n( la)= 10∶ 1,催化剂剂量3%和反应时间4 h,苄醇的转化率和苄基醛的选择性达到63.8%和92.2%。同时,使用三次后催化活性不会改变。

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