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首页> 外文期刊>The Science of the Total Environment >Enhanced fluoride removal from water by rare earth (La and Ce) modified alumina: Adsorption isotherms, kinetics, thermodynamics and mechanism
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Enhanced fluoride removal from water by rare earth (La and Ce) modified alumina: Adsorption isotherms, kinetics, thermodynamics and mechanism

机译:稀土(La和Ce)改性氧化铝增强了水中氟的去除:吸附等温线,动力学,热力学和机理

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The removal of F- from aqueous solution using lanthanum and cerium modified mesoporous alumina (La/MA and Ce/MA) was studied, and characteration of the adsorbents by XRD, BET, XRF, FTIR, TEM, XI'S and the pH(ZPC) measurements were carried out. The adsorption was investigated in both batch and column adsorption systems. Batch experimental results showed that adsorption capacities of adsorbents were recorded in the following order: La/MA > Ce/MA > mesoporous alumina (MA). Besides, adsorption datas were fitted well by Sips isotherm model and Elovich kinetics model, and the maximum adsorption capacity of La/MA was 26.45 mg.g(-1) in Sips model at the dosage of 2.0 g.L-l and near neutral condition (pH= 6.0 +/- 0.1). Moreover, thermodynamic parameters were illustrated that adsorption process of fluoride ion over La/MA was spontaneous and endothermic. In the adsorption process, the interaction between metal and fluoride, the adsorption capacity was increased due to form the bond of M center dot center dot center dot F (M = La or Ce). Furthermore, the influence of coexisted anions on F- removal was investigated, and it was indicated that removal efficiency was slightly affected by the presence of Cl- and NO3-, while SO42- and CO32- caused a sharp fall in removal efficiency. Column experiments results were indicated that time of break-through of La/MA was twice as much as that of MA. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了使用镧和铈改性的介孔氧化铝(La / MA和Ce / MA)从水溶液中去除F-的方法,并通过XRD,BET,XRF,FTIR,TEM,XI'S和pH(ZPC)表征了吸附剂。进行测量。在间歇和塔式吸附系统中都研究了吸附。批量实验结果表明,吸附剂的吸附能力按以下顺序记录:La / MA> Ce / MA>中孔氧化铝(MA)。此外,Sips等温模型和Elovich动力学模型对吸附数据拟合得很好,在2.0 gL-1的剂量和接近中性条件下,Sips模型中La / MA的最大吸附容量为26.45 mg.g(-1)( pH = 6.0 +/- 0.1)。此外,热力学参数表明,氟离子在La / MA上的吸附过程是自发的并且是吸热的。在吸附过程中,金属与氟化物之间的相互作用增加了吸附能力,这是由于形成了M中心点中心点中心点F(M = La或Ce)的键。此外,研究了共存阴离子对F-去除的影响,结果表明,Cl-和NO3-的存在对去除效率的影响很小,而SO42-和CO32-引起去除效率的急剧下降。柱实验结果表明,La / MA的突破时间是MA的两倍。 (C)2019 Elsevier B.V.保留所有权利。

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