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Adsorption of Chromium Ion by Acid Activated Low Cost Carbon-Kinetic, Mechanistic, Thermodynamic and Equilibrium Studies

机译:酸性铬离子的吸附活性低成本碳动力学,机械,热力学和均衡研究

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A carbonaceous adsorbent prepared from an indigenous waste by acid treatment was tested for its efficiency in removing chromium ion. The parameters studied include agitation time, initial chromium ion concentration, carbon dose, pH and temperature. The adsorption followed first order reaction equation and the rate is mainly controlled by intra-particle diffusion. Freundlich and Langmuir isotherm models were applied to the equilibrium data. The adsorption capacity (Qm) obtained from the Langmuir isotherm plots were 27.40, 26.06, 26.06 and 26.17 mg/g respectively at an initial pH of 7.0 at 30, 40, 50 and 60°C. The temperature variation study showed that the chromium ion adsorption is endothermic and spontaneous with increased randomness at the solid solution interface. Significant effect on adsorption was observed on varying the pH of the chromium ion solutions. Almost 70% removal of chromium ion was observed at 60°C. The Langmuir and Freundlich isotherms obtained, positive ?H0value, pH dependent results and desorption of dye in mineral acid suggest that the adsorption of chromium ion on PDC involves physisorption mechanism.
机译:通过酸处理由土着废物制备的碳质吸附剂进行了去除铬离子的效率。所研究的参数包括搅拌时间,初始铬离子浓度,碳剂量,pH和温度。吸附遵循的第一阶反应方程和速率主要通过粒子内扩散来控制。 Freundlich和Langmuir等温模型应用于均衡数据。从Langmuir等温图中获得的吸附容量(QM)分别为27.40,26.06,26.06和26.17mg / g,分别在30,40,50和60℃的初始pH下。温度变异研究表明,铬离子吸附是在固体溶液界面处的随机性增加的吸热和自发性。在改变铬离子溶液的pH时观察到对吸附的显着影响。在60℃下观察到几乎70%的去除铬离子。 Langmuir和Freundlich等温物获得,阳性?H0Value,pH依赖性结果和染料中染料的解吸表明,铬离子对PDC的吸附涉及物理机制。

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