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Photocatalytic Degradation of Synthetic Organic Reactive Dye Wastewater Using GO-TiO_2 Nanocomposite

机译:使用Go-TiO_2纳米复合材料的合成有机反应性染料废水的光催化降解

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One of the major sources of organic pollution is textile dyes, which are also considered toxic and carcinogenic. Among these dyes, azo is one of the main hazardous dyes that cause skin problems and tumors. To remove these organic pollutants, conventional methods such us physicochemical, biological and mechanical treatments are employed currently. Photocatalysis, one of the latest physio-chemical methods for the removal of organic pollutants from effluents, is employed in this study. The present work focuses on the synthesis of graphene oxide (GO) using modified Hummer's method. This is followed by preparation of nanocomposite catalyst GO- titanium dioxide (TiO2) using the ultra-sonication method. GO and GO-TiO2 nanocomposite was characterized by X-ray diffractometry (XRD), Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM/HRSEM). The prepared nanocomposite was used as a catalyst in photocatalysis to treat dye-affected wastewater. The effect of time, dye concentration, catalyst dosage, and pH were studied for the removal of orange ME2RL by photocatalysis using synthesized GO-TiO2, and the experiments revealed significant degradation of orange ME2RL dye. The catalyst was examined for recyclability five times and the results found for the 1st, 2nd, 3rd, 4th and 5th studies were 99.6, 99.2, 98.8, 98.3 and 98 percentages, respectively. The results show the possibility of using GO-TiO2 nanocomposite for the effective treatment of organic azo dyeaffected water by photocatalysis.
机译:有机污染的主要来源之一是纺织染料,也被认为是有毒和致癌性的。在这些染料中,AZO是引起皮肤问题和肿瘤的主要危险染料之一。为了去除这些有机污染物,目前使用常规方法这些常规方法这些物理化学,生物和机械处理。光催化在本研究中采用了用于从流出物中除去有机污染物的最新物理化学方法之一。本工作侧重于使用改性悍马方法的石墨烯(GO)的合成。随后使用超超声方法制备纳米复合催化剂铝钛(TiO 2)。 Go和Go-TiO2纳米复合物的特征在于X射线衍射法(XRD),傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM / HRSEM)。将制备的纳米复合物用作光催化的催化剂,以治疗染料受影响的废水。时间,染料浓度,催化剂剂量和pH的效果研究通过合成的GO-TiO2通过光催化除去橙ME2RL,并且实验显示出橙色ME2RL染料的显着降解。检查催化剂的可回收性五次,并分别为第1,第2,第3,第4和第5研究的结果分别为99.6,99.2,98.8,98.3和98百分比。结果表明,使用Go-TiO2纳米复合物用于通过光催化处理有机偶氮染色水的可能性。

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