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Photocatalytic Degradation of Humic Acid by Fe-TiO2Supported on Spherical Activated Carbon with Enhanced Activity

机译:用增强活性对球形活性炭进行Fe-TiO2Supported的光催化降解腐殖酸

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摘要

Fe-TiO2 supported on spherical activated carbon (Fe-TiO2/SAC) with different Fe contents was prepared by heat treatment process after ion exchange method. The prepared Fe-TiO2/SAC was characterized by SEM, EDS, and BET. Batch experiments for photocatalytic degradation of humic acid by Fe-TiO2/SAC were carried out in the fluidized bed photoreactor. It was found that 0 wt% Fe-TiO2/SAC had high photocatalytic activity in the wavelength range of 100~280 nm. However, Fe-TiO2/SAC with Fe contents of 0.4, 0.6, and 0.8 wt% exhibited higher photocatalytic activity than 0 wt% Fe-TiO2/SAC in the wavelength range of 315~400 nm compared to that of 100~280 nm. The optimum Fe content was 0.6 wt% for maximum photocatalytic degradation of humic acid. Moreover, Fe-TiO2/SAC does not require an additional process step for separation of photocatalyst from treated water after photocatalysis.
机译:在离子交换方法后,通过热处理过程制备具有不同Fe含量的球形活性炭(Fe-TiO2 / SAC)的Fe-TiO2。制备的Fe-TiO2 / SAC的特征在于SEM,EDS和BET。通过Fe-TiO2 / SAC在流化床光反应器中进行培养酸的光催化降解腐蚀性降解的分批实验。发现0wt%Fe-TiO 2 / SAC在100〜280nm的波长范围内具有高光催化活性。然而,与100〜280nm的波长范围为315〜400nm的波长范围,Fe-TiO 2 / Sac为0.4,0.6和0.8wt%的光催化活性比0wt%Fe-TiO 2 /囊更高。最佳Fe含量为0.6wt%,用于腐殖酸的最大光催化降解。此外,Fe-TiO 2 / SAC不需要另外的工艺步骤以在光催化后从处理的水中分离光催化剂。

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