首页> 外文期刊>Journal of nanoscience and nanotechnology >Dye-Adsorption Capacity of High Surface-Area Hydrogen Titanate Nanosheets Processed via Modified Hydrothermal Method
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Dye-Adsorption Capacity of High Surface-Area Hydrogen Titanate Nanosheets Processed via Modified Hydrothermal Method

机译:改性水热法处理高表面积钛酸氢纳米片的染料吸附能力

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High surface-area (380 m~2 · g~(-1)) hydrogen titanate nanosheets (HTNS) processed via the modified hydrothermal method have been utilized for the removal of methylene blue (MB) dye from an aqueous solution via the surface-adsorption process involving the electrostatic attraction mechanism. The HTNS have been characterized using the transmission electron microscope (TEM), selected-area electron diffraction (SAED), X-ray diffraction (XRD), and Brunauer-Emmett-Teller (BET) specific surface-area measurement techniques. The amount of MB dye adsorbed on the surface of HTNS at equilibrium (q_e) has been examined as a function of contact time, initial dye-concentration, and initial solution-pH. Within the investigated range of initial solution-pH (2.5-11), the MB dye adsorption on the surface of HTNS has been observed to follow the pseudo-second-order kinetics with the dye-adsorption capacity of 119 mg·g~(-1) at the initial solution-pH of ~10. The adsorption equilibrium follows the Langmuir isotherm within the initial solution-pH range of 2.5-10. However, in a highly basic solution (initial solution-pH ~11), the adsorption equilibrium has been observed to follow the Langmuir, Freundlich, and Dubinin-Kaganer-Radushkevich (DKR) models in the different ranges of initial MB dye concentration. The mere dependence on the DKR model has not been observed within the investigated range of initial solution-pH. The differences in the dye-adsorption characteristics and capacity of HTNS, compared with those of hydrogen titanate nanotubes, have been attributed to the difference in their specific surface-area. Irrespective of the morphology, the maximum coverage of MB dye on the surface of hydrogen titanate has been noted to be the same (52%).
机译:通过改进的水热法处理的高表面积(380 m〜2·g〜(-1))钛酸氢纳米片(HTNS)已用于通过水溶液表面去除水溶液中的亚甲基蓝(MB)染料。吸附过程涉及静电吸引机理。 HTNS已使用透射电子显微镜(TEM),选择区域电子衍射(SAED),X射线衍射(XRD)和Brunauer-Emmett-Teller(BET)比表面积测量技术进行了表征。已经检查了平衡状态(q_e)下HTNS表面吸附的MB染料的量与接触时间,初始染料浓度和初始溶液pH的关系。在初始溶液pH值(2.5-11)的研究范围内,观察到HTNS表面MB染料的吸附遵循拟二级动力学,染料吸附容量为119 mg·g〜(- 1)初始溶液的pH值为〜10。在2.5-10的初始溶液pH范围内,吸附平衡遵循Langmuir等温线。然而,在碱性较高的溶液中(初始溶液pH〜11),在不同的MB初始浓度范围内,吸附平衡遵循Langmuir,Freundlich和Dubinin-Kaganer-Radushkevich(DKR)模型。在初始溶液-pH的研究范围内,未观察到仅依赖于DKR模型。与钛酸氢纳米管相比,HTNS的染料吸附特性和容量的差异是由于它们比表面积的差异。与形态无关,已经注意到MB染料在钛酸氢盐表面的最大覆盖率是相同的(52%)。

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