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Efficient removal of dyes from dyeing wastewater by powder activated charcoal/titanate nanotube nanocomposites: adsorption and photoregeneration

机译:通过粉末活性炭/钛酸盐纳米管纳米复合材料有效地从染色废水中去除染料:吸附和光化

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Effective removal of dyes has been widely investigated by the adsorption of powder activated carbon and photodegradation by titanate nanotubes (TNTs). In this study, a facile one-step alkaline-hydrothermal method was applied to synthesize powder activated charcoal-supported TNTs (TNTs@PAC). Adsorption of three representative dyes, i.e., cationic methylene blue (MB), cationic rhodamine B (RhB), and anionic methyl orange (MO), onto TNTs@PAC was evaluated by the adsorption kinetic experiments and adsorption isotherms. The first 30 min is the main time phase of adsorption, and MB, RhB, and MO obtained the experimental equilibrium uptake of 173.30, 115.06, and 106.85 mg/g, respectively, indicating their final removal efficiencies of 100%, 69.36%, and 64.11%, respectively. The increase of pH value reduced adsorption capacity of MO (from 149.35 mg/g at pH of 2 to 96.99 mg/g at pH of 10), but facilitated MB adsorption, which was attributed to the charge distribution on the surface of TNTs@PAC and the charge of dyes at different pH. Furthermore, good capacity recoveries of MB by TNTs@PAC (>99%) were observed after UV irradiation treatment, indicating the used TNTs@PAC can be easily recycled for the adsorption of MB by UV irradiation. Overall, TNTs@PAC is an effective process for remediation of dye-contaminated water because of its adsorption performance for all selected dyes and good regeneration capacity for MB.
机译:有效地去除染料的已通过纳米管(TNTS)粉末活性炭和光降解的吸附被广泛研究。在这项研究中,一个浅显一步法碱性水热方法应用于合成粉末活性炭负载TNTS(TNTS @ PAC)。的三种具有代表性的染料,即,阳离子亚甲蓝(MB),阳离子罗丹明B(罗丹明B),和阴离子甲基橙(MO),吸附到TNTS @ PAC是由吸附动力学实验和吸附等温线进行评价。前30分钟是吸附的主要时间相位,和MB,罗丹明B,和MO得到的173.30实验平衡摄取,115.06和106.85毫克/克,分别指示为100%,69.36%的最终去除效率,并64.11%之间。的pH值的增加而降低MO的吸附容量(从149.35毫克/克在pH为2〜96.99毫克/克,以10的pH),但促进了MB吸附,这是由于电荷分布TNTS @ PAC的表面上和电荷在不同pH的染料。此外,UV照射处理后,观察到由TNTS @ PAC(> 99%)MB的良好的容量回收率,表示上述使用TNTS @ PAC可以容易地再循环用于MB的通过UV照射的吸附。总体而言,TNTS @ PAC是因为所有选定的染料和MB良好的再生能力及其吸附性能的染料污染的水整治的有效方法。

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