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首页> 外文期刊>Journal of nanomaterials >Arsenic removal from aqueous solution using pure and metal-doped Titania nanoparticles coated on glass beads: Adsorption and column studies
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Arsenic removal from aqueous solution using pure and metal-doped Titania nanoparticles coated on glass beads: Adsorption and column studies

机译:使用涂覆在玻璃珠上的纯金属掺杂的二氧化钛纳米粒子从水溶液中去除砷:吸附和柱研究

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摘要

Nanosized metal oxide, Titania, provides high surface area and specific affinity for the adsorption of heavy metals, including arsenic (As), which is posing a great threat to the world population due to its carcinogenic nature. In this study, As(III) adsorption was studied on pure and metal- (Ag- and Fe-) doped Titania nanoparticles. The nanoparticles were synthesized by liquid impregnation method with some modifications, with crystallite size in the range of 30 to 40 nm. Band gap analysis, using Kubelka-Munk function showed a shift of absorption band from UV to visible region for the metal-doped Titania. Effect of operational parameters like dose of nanoparticles, initial As(III) concentration, and pH was evaluated at 25°C. The data obtained gave a good fit with Langmuir and Freundlich isotherms and the adsorption was found to conform to pseudo-second-order kinetics. In batch studies, over 90% of arsenic removal was observed for both types of metal-doped Titania nanoparticles from a solution containing up to 2 ppm of the heavy metal. Fixed bed columns of nanoparticles, coated on glass beads, were used for As(III) removal under different operating conditions. Thomas and Yoon-Nelson models were applied to predict the breakthrough curves and to find the characteristic column parameters useful for process design. The columns were regenerated using 10% NaOH solution.
机译:纳米金属氧化物Titania具有高表面积和对重金属(包括砷)的吸附的特异性亲和力,砷由于其致癌性而对世界人口构成了巨大威胁。在这项研究中,研究了As(III)在纯金属和(Ag-和Fe-)掺杂的Titania纳米颗粒上的吸附。通过液体浸渍法对纳米颗粒进行了一些修改,其微晶尺寸在30至40 nm范围内。使用Kubelka-Munk函数进行的带隙分析显示,掺杂金属的二氧化钛的吸收带从紫外线转移到可见光区域。在25°C下评估了操作参数(如纳米颗粒的剂量,初始As(III)浓度和pH)的影响。获得的数据与Langmuir和Freundlich等温线非常吻合,并且吸附符合拟二级动力学。在批处理研究中,从包含至多2 ppm的重金属的溶液中,两种类型的金属掺杂的Titania纳米粒子的砷去除率均超过90%。涂覆在玻璃珠上的纳米颗粒固定床色谱柱用于在不同操作条件下去除As(III)。 Thomas和Yoon-Nelson模型被用来预测穿透曲线并找到对过程设计有用的特征性柱参数。使用10%NaOH溶液再生柱。

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