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Photocatalytic degradation of ethylene by TiO2 nanotubes/reduced graphene oxide prepared by gamma irradiation

机译:通过TiO2纳米管/γ辐射制备的TiO2纳米管/氧化烯烃的光催化降解乙烯

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摘要

A nanocomposite photocatalyst of TiO2 nanotubes/reduced graphene oxide (rGO-TNTAs) were prepared by gamma-ray radiolysis. The rGO-TNTAs were studied for photocatalytic decomposition of ethylene (C2H4) in a refrigerated environment. Degradation efficiency of ethylene by these materials was described by the apparent first-order rate constant (K). The composite was characterized by Raman spectroscopy (RS), X-ray photoelectron spectroscopy (XPS), Atomic force microscopy (AFM) and Field emission electron microscopy (FESEM). The preparing parameters for materials affecting the degradation efficiency in terms of the rate constant were studied, including the GO addition and the irradiation dose. The results showed that (1) gamma irradiation can induce GO to partial rGO, the rGO surface of rGO-TNTAs was smooth and loosely lamellar structure. (2) The K of the rGO-TNTAs is highly dependent on the GO addition and the irradiation dose. With a GO addition of 0.1 g and an irradiation dose of 20 kGy, the maximum K value of rGO-TNTAs could be obtained under the experimental conditions. (3) From analysis of the Raman spectroscopy spectrum, optimum changes had occurred in the intensity ratio of D-band to G-band of the GO that had been gamma-ray-irradiated with a dose of 20 kGy, resulting in the K of rGO-TNTAs increased by 40.9% compared with that of TNTAs.
机译:通过γ射线辐射制备TiO2纳米管/还原氧化物(RGO-TNTAS)的纳米复合光催化剂。研究了RGO-TNTAS在冷藏环境中进行光催化分解乙烯(C2H4)。通过这些材料的乙烯的降解效率通过表观一阶速率常数(K)描述。复合材料的特征在于拉曼光谱(RS),X射线光电子能谱(XPS),原子力显微镜(AFM)和场发射电子显微镜(FESEM)。研究了影响速率常数的降解效率的材料的制备参数,包括Go添加和辐照剂量。结果表明,(1)γ辐射可以诱导逐型rgo,RGO-TNTA的RGO表面光滑且松散地板状结构。 (2)RGO-TNTA的K高度依赖于Go添加和辐照剂量。随着0.1g的添加和20kGy的辐射剂量,在实验条件下可以获得RGO-TNTA的最大k值。 (3)从分析拉曼光谱谱,最佳变化发生在γ射线辐射的Go的D波段的强度比中发生的,导致k与TNTAS相比,RGO-TNTAS增加了40.9%。

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