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A novel CdO/graphene alkali-activated steel slag nanocomposite for photocatalytic degradation of dye wastewater

机译:一种新型CDO /石墨烯碱活化钢渣纳米复合材料,用于染料废水的光催化降解

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摘要

A novel CdO/graphene alkali-activated steel slag nanocomposite (CdO/GASSN) was firstly prepared and was used for photocatalytic degradation of direct fast bordeaux (DFB) dye. X-ray diffraction results showed that nanocomposite contained two mineral phases including calcium silicate hydrate and cadmium oxide, and the crystallite sizes of CdO on nanocomposites were in nanoscale (20.3nm and 25.7nm). The pore size distribution results indicated that about 80% pore volume concentrated on the mesoporous range. UV-vis diffuse reflectance spectra showed that the 8CdO/GASSN sample possessed the lowest band gap and exhibited the highest photocatalytic degradation efficiency closing to 100% under the irradiation of UV for 100min. The photocatalytic degradation reaction belongs to the first-order reaction kinetics.
机译:首先制备了一种新型CDO /石墨烯碱活化钢渣纳米复合材料(CDO / GASSN),并用于光催化的直接波阳(DFB)染料的光催化降解。 X射线衍射结果表明,纳米复合材料含有两个矿物相,包括硅酸钙水合物和氧化镉,纳米复合材料的CDO的微晶尺寸均为纳米级(20.3nm和25.7nm)。 孔径分布结果表明约80%的孔体积浓缩在中孔范围内。 UV-Vis漫反射光谱显示,8CDO / Gassn样品具有最低带隙,并且在UV的照射下闭合到100min的最高光催化降解效率。 光催化降解反应属于一阶反应动力学。

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