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首页> 外文期刊>Chemistry and Materials Research >Removal of Phenol from Paint Wastewater by Adsorption onto Phosphoric Acid Activated Carbon Produced from Coconut Shell: Isothermal and Kinetic Modelling Studies
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Removal of Phenol from Paint Wastewater by Adsorption onto Phosphoric Acid Activated Carbon Produced from Coconut Shell: Isothermal and Kinetic Modelling Studies

机译:吸附到椰子壳产生的磷酸活性炭上去除油漆废水中的苯酚:等温和动力学模型研究

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The feasibility of using phosphoric acid activated carbon produced from coconut shell to remove phenol from paint wastewater under batch mode was investigated. The results showed that adsorption of phenol was contact time, adsorbent particle size and adsorbent dosage dependent. The batch equilibrium adsorption data were analyzed by two-parameter adsorption isotherm models of Langmuir and Freundlich using the linear regression method. Both isotherm models fitted very well to the equilibrium adsorption data, however, the Freundlich isotherm equation provided the best model to describe the adsorption of phenol onto coconut shell activated carbon. Adsorption capacity of 2.01 mg/g and adsorption intensity of 1.07 was obtained for granular coconut shell activated carbon and corresponding 3.63 mg/g and 1.55 for powdered coconut shell activated carbon at 30 o C. The adsorption kinetic data were fitted to three adsorption kinetic models (pseudo first-order, pseudo second-order and intra-particle diffusion) using the linear regression method. The three kinetic models fitted well to the adsorption kinetic data; however, the pseudo second-order kinetic model gave the best fit and the adsorption mechanism was controlled by film diffusion. Thus, phosphoric acid activated carbon produced from coconut shell has the potential for application as an effective adsorbent for phenol removal from wastewater.
机译:研究了用椰子壳生产的磷酸活性炭以间歇方式从油漆废水中去除苯酚的可行性。结果表明,苯酚的吸附取决于接触时间,吸附剂的粒径和吸附剂的用量。使用线性回归方法,通过Langmuir和Freundlich的两参数吸附等温线模型分析批平衡吸附数据。两种等温线模型都非常适合平衡吸附数据,但是,Freundlich等温线方程式提供了描述苯酚在椰子壳活性炭上吸附的最佳模型。在30 o C下,颗粒状椰子壳活性炭的吸附容量为2.01 mg / g,吸附强度为1.07,相应的粉状椰子壳活性炭的吸附容量为3.63 mg / g和1.55。将吸附动力学数据拟合为三个吸附动力学模型(伪一阶,伪二阶和粒子内扩散)使用线性回归方法。三种动力学模型非常适合吸附动力学数据。但是,伪二级动力学模型拟合效果最好,吸附机理受薄膜扩散控制。因此,由椰子壳生产的磷酸活性炭具有作为从废水中去除苯酚的有效吸附剂的潜力。

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