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首页> 外文期刊>Bulletin of Materials Science >Studies on Cr(VI) removal from aqueous solutions by nanotitania under visible light and dark conditions
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Studies on Cr(VI) removal from aqueous solutions by nanotitania under visible light and dark conditions

机译:纳米二氧化钛在可见光和黑暗条件下从水溶液中去除六价铬的研究

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The current study deals with Cr(VI) removal by nanotitania under fluorescent light and dark conditions. The equilibrium removal capacities, 85.85 and 59.4 mg of Cr(VI) g(-1) of nanoparticle were noted for nanotitania interacted under light and dark conditions, respectively, at optimized conditions (pH: 7.0, contact time: 30 min, initial Cr(VI) concentration: 20 mg l(-1), nanoparticle dosage: 0.1 g l(-1)). Under both the conditions, the equilibrium removal data fitted well with the Langmuir isotherm model. The nanotitania followed a second-order kinetics under light condition whereas a pseudo-second-order kinetics was observed under dark condition. The surface characterization of nanotitania was carried out by zeta potential measurement and transmission electron microscope (TEM). Fourier transform infrared (FT-IR) studies carried out under light and dark conditions indicate the interaction of surface functional groups to Cr(VI). Cr(VI) removal study carried out in the Cr(VI)-Cr(III) mixture showed a decrease in Cr(VI) removal capacity with increase in Cr(III) concentration. A 92% regeneration of nanoparticle was observed indicating efficient reusability of the system. The applicability of the nanotitania in Cr(VI) contaminated water was studied by spiking Cr(VI) in natural water matrices like ground water and lake water.
机译:当前的研究涉及在荧光灯和黑暗条件下纳米二氧化钛去除Cr(VI)。注意到在优化条件下(pH:7.0,接触时间:30分钟,初始Cr),在明亮和黑暗条件下相互作用的纳米二氧化钛的平衡去除能力分别为85.85和59.4 mg Cr(VI)g(-1)纳米颗粒。 (VI)浓度:20 mg l(-1),纳米颗粒剂量:0.1 gl(-1))。在两种条件下,平衡去除数据都与Langmuir等温线模型非常吻合。纳米二氧化钛在光照条件下遵循二级动力学,而在黑暗条件下则观察到伪二级动力学。纳米二氧化钛的表面表征通过ζ电势测量和透射电子显微镜(TEM)进行。在明暗条件下进行的傅立叶变换红外(FT-IR)研究表明表面官能团与Cr(VI)的相互作用。在Cr(VI)-Cr(III)混合物中进行的Cr(VI)去除研究表明,随着Cr(III)浓度的增加,Cr(VI)去除能力降低。观察到92%的纳米颗粒再生,表明该系统具有有效的可重用性。通过将Cr(VI)掺入地下水和湖水等天然水基质中,研究了纳米二氧化钛在Cr(VI)污染水中的适用性。

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