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首页> 外文期刊>International Research Journal of Pure and Applied Chemistry >Synthesis of TiO2@ Activated Bagasse Fly Ash Nanocomposite as a Photocatalyst for Removal of Dyes and Heavy Metals from Wastewater
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Synthesis of TiO2@ Activated Bagasse Fly Ash Nanocomposite as a Photocatalyst for Removal of Dyes and Heavy Metals from Wastewater

机译:TiO2 @活化的蔗渣粉煤灰纳米复合材料的光催化去除废水中的染料和重金属

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摘要

TiO2@activated bagasse fly ash nanocomposite (TiO2/ABFA) was prepared and used as a photocatalyst for cadmium and methyl orange dye removal from bi-component pollutant solutions. Various weight ratios of TiO2 to ABFA (1:3, 1:2, and 1:1) were synthesized. Three systems were applied, the first system (A) was carried out under UV irradiation for 4 h and 1h in the dark, the second system (B) was carried out under UV irradiation with 100 μL H2O2 for 4 h and 1 h in the dark, and third system (C) was carried out in the dark for 5 h (only adsorption process). The characterization of ABFA and TiO2/ABFA were studied by SEM, XRF, and XRD patterns. The results showed that the highest MO and Cd2+ removal efficiency confirmed by TiO2/ABFA (1:2) nanocomposite photocatalyst. The application of TiO2/ABFA (1:2) nanocomposite compared to ABFA adsorbent led to enhancement of MO removal efficiency from 74.14 to 98.5% and from 55.28 to 82% at low and high MO concentration, respectively. Degradation of MO by system (B) was more effective than that by systems (A) and (C), while Cd2+ removal efficiency was higher by adsorption system (C). The optimum operation factors for mixed cadmium and methyl orange removal by TiO2/ABFA (1:2) were solution pH 7, 2 g/l catalyst dose, 300 min contact time, under UV irradiation and H2O2. Removal rate of MO and Cd2+ followed pseudo-second order model.
机译:制备了TiO2活化的蔗渣粉煤灰纳米复合材料(TiO2 / ABFA),并用作从双组分污染物溶液中去除镉和甲基橙染料的光催化剂。合成了各种重量比的TiO2与ABFA(1:3、1:2和1:1)。应用了三个系统,第一个系统(A)在黑暗中于UV辐射下进行4 h和1h,第二个系统(B)在100μLH2O2于UV辐射下在黑暗中进行4 h和1 h。黑暗中,在黑暗中进行第三个系统(C)5小时(仅吸附过程)。通过SEM,XRF和XRD图谱研究了ABFA和TiO2 / ABFA的表征。结果表明,TiO2 / ABFA(1:2)纳米复合光催化剂证实了最高的MO和Cd2 +去除效率。与ABFA吸附剂相比,TiO2 / ABFA(1:2)纳米复合材料的应用导致MO去除效率在低和高MO浓度下分别从74.14提高到98.5%,从55.28提高到82%。系统(B)的MO降解比系统(A)和(C)降解更有效,而吸附系统(C)去除Cd2 +的效率更高。 TiO2 / ABFA(1:2)去除混合镉和甲基橙的最佳操作因素是溶液pH 7、2 g / l催化剂剂量,300分钟接触时间,紫外线照射和H2O2。 MO和Cd2 +的去除速率遵循伪二级模型。

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