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Kinetic and computational evaluation of activated carbon produced from rubber tires toward the adsorption of nickel in aqueous solutions

机译:橡胶轮胎生产的活性炭对水溶液中镍的吸附的动力学和计算评估

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This work aims to evaluate the potential of waste rubber tire as an inexpensive sorbent material for nickel ion removal from aqueous solution. A laboratory scale study carried out on the production of activated carbon (AC) from waste rubber tire by physical activation method. Scanning electron microscope analysis was used to characterize the surface properties of the AC adsorbent. The surface area of AC was measured to be 465 m(2)/g. This large surface area of the AC could play a vital role in enhancing the removal of Ni(II). Aqueous solutions containing nickel ion in varying concentrations were prepared. Batch adsorption experiments at different operating parameters such as pH, metal concentration, adsorbent dose, contact time and temperature were carried out. These in turn revealed the adsorption capacity and helped in determining the mechanism with respect to thermodynamics, equilibrium and kinetics. The kinetic studies were carried out to determine the kinetics of the adsorption process. The Langmuir isotherm was followed under the present conditions with R-2 = 0.938. The overall absolute deviations between experimental and predicted values were found to be 14.4%. The Langmuir model better appears to fit the adsorption of Ni onto AC adsorbent. The characterization and computational studies of the AC adsorbent after adsorption of nickel was also carried out and the results confirmed the positive adsorption process. FTIR analysis of AC before and after Ni adsorption indicated that adsorption of nickel metal on AC took place with the disappearance/diminishing of carbonyl groups. The results of nickel adsorption on AC revealed its potential for pollutant removal and finally its application in water treatment.
机译:这项工作旨在评估废弃橡胶轮胎作为廉价吸附剂材料从水溶液中去除镍离子的潜力。通过物理活化方法对废旧橡胶轮胎生产活性炭(AC)进行了实验室规模的研究。扫描电子显微镜分析被用来表征AC吸附剂的表面性质。 AC的表面积经测量为465 m(2)/ g。 AC的较大表面积可能在增强Ni(II)的去除方面起着至关重要的作用。制备含有不同浓度的镍离子的水溶液。在不同的操作参数(例如pH,金属浓度,吸附剂剂量,接触时间和温度)下进行了批量吸附实验。这些反过来揭示了吸附能力,并有助于确定有关热力学,平衡和动力学的机理。进行动力学研究以确定吸附过程的动力学。在当前条件下,Rangmuir等温线为R-2 = 0.938。实验值和预测值之间的整体绝对偏差为14.4%。 Langmuir模型似乎更适合Ni在AC吸附剂上的吸附。还对镍吸附后的交流吸附剂进行了表征和计算研究,结果证实了正吸附过程。镍吸附前后交流的FTIR分析表明,镍金属在AC上的吸附随羰基的消失/减少而发生。镍在AC上的吸附结果表明了其去除污染物的潜力,并最终将其应用于水处理中。

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