首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Modified sol-gel/hydrothermal method for the synthesis of microsized TiO2 and iron-doped TiO2, its characterization and solar photocatalytic activity for an azo dye degradation
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Modified sol-gel/hydrothermal method for the synthesis of microsized TiO2 and iron-doped TiO2, its characterization and solar photocatalytic activity for an azo dye degradation

机译:用于合成微化TiO2和铁掺杂TiO2的改性溶胶 - 凝胶/水热法,其表征和太阳能光催化活性,用于氮杂染料降解

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摘要

TiO2 and iron-doped TiO2 microsized powder is prepared by sol-gel method combined with hydrothermal treatment as an alternative to obtain high specific area under controlled conditions. Synthesis parameters such as temperature of hydrothermal treatment (125 degrees C-210 degrees C), calcination temperature (500 degrees C-900 degrees C), and calcination time (1 h-9 h) along with operational parameter as solution pH (3, 7 and 9) in the solar photocatalytic reaction are assessed. TiO2 and iron-doped TiO2 micro powders are characterized by XRD studies, FE-SEM, specific area BET and photocatalytic activity by basic orange 2 (BO2) mineralization under solar irradiation. Results showed that ultrafine anatase microspheres are generated by sol-gel/hydrothermal treatment. Iron-doped TiO2, prepared by consecutive steps such as sot-gel/hydrothermal treatment at 200 degrees C, washed with ethanol, followed by calcination at 600 degrees C and dried with a rotary evaporator, showed the highest discoloration and mineralization of BO2. Outstanding performance is observed when compared with commercial TiO2 (Hombikat). (C) 2018 Elsevier B.V. All rights reserved.
机译:通过溶胶 - 凝胶方法制备TiO 2和铁掺杂TiO 2微粉粉末,与水热处理为替代物,以在受控条件下获得高特异性面积。合成参数如温度水热处理温度(125摄氏度C-210℃),煅烧温度(500摄氏度C-900℃),煅烧时间(1H-9 H)以及作为溶液pH的操作参数(3, 7和9)评估太阳能光催化反应。 TiO2和铁掺杂TiO2微粉的特征在于XRD研究,Fe-SEM,特定区域BET和光催化活性在太阳照射下通过碱性橙2(BO2)矿化。结果表明,超细锐钛矿微球由溶胶 - 凝胶/水热处理产生。铁掺杂TiO 2通过连续步骤制备,例如在200℃下的SOT-凝胶/水热处理,用乙醇洗涤,然后在600℃下煅烧并用旋转蒸发器干燥,显示出BO2的最高变色和矿化。与商业TiO2(Hombikat)相比,观察到出色的性能。 (c)2018 Elsevier B.v.保留所有权利。

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