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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photocatalytic mineralization of disperse red 167.1 by cubic Cu2O nanoparticles: Experimental and theoretical approach
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Photocatalytic mineralization of disperse red 167.1 by cubic Cu2O nanoparticles: Experimental and theoretical approach

机译:分散红色167.1的光催化矿化通过立方Cu2O纳米粒子:实验和理论方法

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The monoazo dye Disperse Red 167.1 (DR167.1) is known as a carcinogenic pollutant in industrial textile wastewater. In the present study, cubic Cu2O morphology was synthesized and characterized by FESEM, XRD, BET/BJH, FTIR, and DRS techniques. We found the crystallite size was 24.96 nm by the Williamson-Hall. Also, the band gap energy was equal to 1.8 eV by Kubelka-Munk. To further understand the general structure and electron properties, theoretical density calculations were performed using DOML3, CASTEP and FHI- aims codes. The direct band gap was 1.298eV by (CASTEP) code and 1.886 eV by (FHI aims) code, which was calculated using Principle Density Function (DFT) calculations. We found that based on the selection rule (Delta L= +/- 1), two types of electronic transitions are possible: Electron transition from 3dCu to 3pCu orbitals and 2pO to 3dCu orbitals. Physicochemical parameters were calculated in photocatalytic degradation of DR167.1 by Cu2O nanoparticles. The oxidation results indicated that at pH equal to 6.44 without the presence of H2O2, 0.75 mg.L-1 of Cu2O, and color concentration of 210 mg.L-1 during 2 min, a considerable efficiency as large as 84.40 % was obtained. Removal under the visible light irradiation rose to 93.25% upon increasing the time to 40 min. The kinetics of this process obeyed from pseudo-second order model. From an isothermic point of view, the highest correlations and minimum error values belonged to the Fritz Schlunder, Koble Corrigan, and Tempkin isotherms respectively.
机译:单氮杂染料分散红色167.1(DR167.1)称为工业纺织废水中的致癌污染物。在本研究中,通过FESEM,XRD,BET / BJH,FTIR和DRS技术合成立方Cu2O形态并表征。我们发现威廉姆森大厅的微晶尺寸为24.96纳米。此外,BUS隙能量等于Kubelka-MUNK等于1.8 eV。为了进一步了解一般结构和电子性质,使用Doml3,Castep和FHI-AIMS代码进行理论密度计算。 (Castep)代码和(FHI AIMS)代码的直接频带差距为1.298EV,使用原理密度函数(DFT)计算计算。我们发现,基于选择规则(Delta L = +/- 1),可以使用两种类型的电子转换:从3DCU到3PCU轨道和2Po到3DCU轨道的电子转换。 Cu 2 O纳米颗粒DR167.1的光催化降解了物理化学参数。氧化结果表明,在pH等于6.44的情况下,在210mO 2的Cu 2 O 2,200mg,0.75mg.L-1的存在下,210mg.L-1的颜色浓度,得到大约84.40%的相当大的效果。在增加时间至40分钟时,在可见光照射下的去除率上升至93.25%。从伪二次订单模型中遵守此过程的动力学。从等温的角度来看,分别是最高的相关性和最小误差值,分别属于Fritz Schlunder,Koble Corrigan和Tempkin等温。

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