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Synthesis and use of alumina nanoparticles as an adsorbent for the removal of Zn(II) and CBG dye from wastewater

机译:氧化铝纳米粒子作为吸附剂去除废水中的Zn(II)和CBG染料的合成及应用

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In the present study, an alumina nanoparticle adsorbent is developed using solution combustion synthesis method and is further utilized for the removal of zinc (Zn(II)) and color black G (CBG) from wastewater. The developed adsorbent is characterized using SEM–EDS technique. The effect of various parameters such as the initial concentration, the contact time, the mass of adsorbent and the solution pH are studied for the removal of Zn(II) and CBG. The equilibrium time for both, Zn(II) and CBG is obtained to be approximately 4.5?h. The maximum adsorption of Zn(II) is found at pH value of 7 while the maximum removal of CBG is obtained at pH value of 2. The Langmuir isotherm model is found suitable for explaining the adsorption behavior of Zn(II) (R2?=?0.976) and CBG (R2?=?0.974) onto alumina nanoparticles, which supports the monolayer formation of Zn(II) and CBG during the adsorption process. The maximum adsorbent capacity of alumina nanoparticles for the removal of Zn(II) and CBG are obtained as 1,047.83 and 263.16?mg?g?1, respectively. The kinetic data obtained during the experiments are better fitted with the pseudo-first-order model for both, Zn(II) (R2?=?0.989) and CBG (R2?=?0.971). A statistical analysis is also carried out to develop the mathematical equation which relates the different independent parameters (initial metal concentration, pH, time and mass of adsorbent) with the dependent parameter (adsorption capacity). The optimum values of independent parameters are estimated using Microsoft Solver.
机译:在本研究中,使用溶液燃烧合成方法开发了一种氧化铝纳米颗粒吸附剂,并将其进一步用于从废水中去除锌(Zn(II))和色黑G(CBG)。使用SEM-EDS技术对开发的吸附剂进行表征。研究了各种参数(如初始浓度,接触时间,吸附剂质量和溶液pH值)对Zn(II)和CBG去除的影响。 Zn(II)和CBG的平衡时间均约为4.5?h。在pH值为7时,对Zn(II)的最大吸附,而在pH值为2时,对CBG的最大去除。发现Langmuir等温模型适合于解释Zn(II)的吸附行为(R2?= (0.976)和CBG(R2α=?0.974)吸附到氧化铝纳米颗粒上,从而在吸附过程中支持Zn(II)和CBG的单层形成。获得的用于去除Zn(II)和CBG的氧化铝纳米颗粒的最大吸附容量分别为1,047.83和263.16mgmggg-1。实验中获得的动力学数据与Zn(II)(R2α=?0.989)和CBG(R2α=?0.971)的伪一级模型更好地吻合。还进行统计分析以开发数学方程,该数学方程将不同的独立参数(初始金属浓度,pH,时间和吸附剂质量)与从属参数(吸附容量)相关联。使用Microsoft Solver估算独立参数的最佳值。

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