Photocatalytic Degradation of Rhodamine B Dye in Wastewater Using Gelatin/CuS/PVA Nanocomposites under Solar Light Irradiation

A. Al-Kahtani
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引用次数: 84

Abstract

The crosslinked gelatin/CuS/PVA nanocomposite catalyst prepared using gamma irradiation as initiator was extensively characterized using several techniques including transmission electron microscopy (TEM), UV-Vis spectroscopy, infrared spectroscopy (IR) and X-ray diffraction (XRD). We chose Rhodamine B (RhB) dye as a model contaminant in order to investigate its Photocatalytic activity under solar light irradiation. The effects of pH, catalyst concentration and RhB concentration on degradation reaction were also investigated. Similar to the observed trend for the photocatalytic oxidation of other organic compounds, the efficiency of photocatalytic degradation of RhB tended to decrease with increasing the concentration of RhB. The degradation efficiency of RhB is found to increase as pH is increased up to pH of 10, then starts decreasing at pH values higher than 10. The degradation efficient of RhB is found to increase as the amount of the catalyst dosage increases up to an optimum value of 0.25 g. Increasing the concentrations of photocatalyst beyond 0.25 g was found to decrease the photocatalytic activity of RhB. It was proven that the degradation process of RhB reaction rate obeyed a pseudo-first-order reaction of the catalyst concentration of gelatin/CuS/PVA nanocomposite. The degradation kinetics was found to fit well Langmuir-Hinshelwood rate law. The results obtained showed that after using the catalyst five times repeatedly, the catalyst retained its efficiency and the rate of the degradation process was still above 80%.
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明胶/CuS/PVA纳米复合材料在太阳光照射下光催化降解废水中的罗丹明B染料
采用透射电子显微镜(TEM)、紫外可见光谱(UV-Vis)、红外光谱(IR)和X射线衍射(XRD)等技术,对以γ射线为引发剂制备的交联明胶/CuS/PVA纳米复合催化剂进行了广泛的表征。选择罗丹明B(RhB)染料作为模型污染物,研究其在太阳光照射下的光催化活性。考察了pH、催化剂浓度和RhB浓度对降解反应的影响。与观察到的其他有机化合物的光催化氧化趋势类似,RhB的光催化降解效率往往随着RhB浓度的增加而降低。发现RhB的降解效率随着pH值增加到10而增加,然后在高于10的pH值时开始降低。发现RhB的降解效率随着催化剂用量的增加而增加,直到0.25g的最佳值。发现将光催化剂的浓度增加到0.25g以上会降低RhB的光催化活性。结果表明,明胶/CuS/PVA纳米复合材料的RhB反应速率的降解过程服从于催化剂浓度的拟一级反应。降解动力学符合Langmuir-Hinshelwood速率定律。结果表明,在重复使用催化剂五次后,催化剂保持了其效率,降解过程的速率仍在80%以上。
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