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Microwave-assisted hydroxylation of benzene to phenol with H_2O_2 over FeSO_4/SiO_2 被引量:4

Microwave-assisted hydroxylation of benzene to phenol with H_2O_2 over FeSO_4/SiO_2
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摘要 Hydroxyl radicals HO are generated under Fenton-like (Fe2++H2O2→HO?+OH?+Fe3+) catalytic conditions upon microwave irradiation. Liquid-phase direct catalytic oxidation of benzene to phenol was obtained using FeSO4 supported on silica gel as a solid catalyst and hydrogen peroxide as the oxidant. The effects of various parameters, such as the different solvents, the amount of solvent used, the amount of catalyst used, the reaction time, the reaction temperature and the amount of hydrogen peroxide used on the yield of phenol were studied to identify optimum reaction conditions. Conventionally heated reaction gives a phenol yield of 0.6%. A higher phenol yield of 13.9% with a selectivity of 100% is obtained when the reaction mixture was irradiated with micro-wave energy. It is concluded that microwave irradiation offers more effective control of energy input for hydroxyl radical generation that is appropriate for various synthetic reactions. Hydroxyl radicals HO are generated under Fenton-like (Fe^2++H2O2→HO^-+OH^-+Fe^3+) catalytic conditions upon microwave irradiation. Liquid-phase direct catalytic oxidation of benzene to phenol was obtained using FeSO4 supported on silica gel as a solid catalyst and hydrogen peroxide as the oxidant. The effects of various parameters, such as the different solvents, the amount of solvent used, the amount of catalyst used, the reaction time, the reaction temperature and the amount of hydrogen peroxide used on the yield of phenol were studied to identify optimum reaction conditions. Conventionally heated reaction gives a phenol yield of 0.6%. A higher phenol yield of 13.9% with a selectivity of 100% is obtained when the reaction mixture was irradiated with microwave energy. It is concluded that microwave irradiation offers more effective control of energy input for hydroxyl radical generation that is appropriate for various synthetic reactions.
出处 《Mining Science and Technology》 EI CAS 2010年第1期93-96,共4页 矿业科学技术(英文版)
基金 supported by the National Natural Science Foundation of China (No.50921002)
关键词 hydroxyl radicals Fenton catalytic conditions microwave energy 过氧化氢 苯酚 微波辅助 催化剂用量 羟化 硫酸亚铁 液相催化氧化 最佳反应条件
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