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Applicability of Coal Bottom Ash from Thermoelectric Power Plant as an Alternative Heterogeneous Catalyst in Photo-Fenton Reaction

机译:火力发电厂煤底灰在光芬顿反应中作为非均相催化剂的应用

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In this work, coal bottom ash, a residue generated in thermoelectric power plant, was employed as an alternative catalyst in photo-Fenton reaction for the degradation of sunset yellow dye from liquid solution under visible irradiation. The residue was characterized by techniques such as XRD, XRF, N-2 adsorption/desorption isotherms, SEM/EDS, and. FT-IR. The influence of reaction parameters such as solution pH, catalyst dosage, and H2O2 concentration on dye removal was analyzed by a central composite rotatable design 2(3). According to the characterization results, the presence of iron in the material was confiimed by analysis of chemical composition by XRF, presenting 5.5 wt% in terms of iron oxide. Through the response surface methodology, it was possible to adjust the polynomial model and determine the optimum region of dye removal. The regression model was predictive and significant, with a coefficient of determination (R-2) equivalent to 91%, showing a good fit between the experimental and theoretical values. The optimum region reaching a color removal of 91% has a pH level of 2.7, catalyst dosage of 0.9 g L-1, and. H2O2 concentration of 10 mmol L-1. Therefore, coal bottom ash, an abundant residue with low cost, showed to be a potential catalyst in a photo Fenton process for the removal of organic contaminant from liquid solution.
机译:在这项工作中,煤粉煤灰(一种在火力发电厂中产生的残渣)被用作光芬顿反应的替代催化剂,用于在可见光照射下从溶液中降解日落黄色染料。通过诸如XRD,XRF,N-2吸附/解吸等温线,SEM / EDS等技术表征残留物。红外光谱通过中心复合可旋转设计2(3)分析了反应参数(例如溶液的pH值,催化剂用量和H2O2浓度)对染料去除的影响。根据表征结果,通过XRF分析化学组成来确定材料中铁的存在,以氧化铁计为5.5重量%。通过响应表面方法,可以调整多项式模型并确定染料去除的最佳区域。回归模型具有预测性和显着性,测定系数(R-2)等于91%,显示出实验值和理论值之间的良好拟合。达到91%的脱色的最佳区域的pH值为2.7,催化剂用量为0.9 g L-1,并且。 H2O2浓度为10 mmol L-1。因此,煤底灰是一种低成本的丰富残留物,在光芬顿法中显示出从液体溶液中去除有机污染物的潜在催化剂。

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