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Removal of selected polycyclic aromatic hydrocarbons from aqueous solution onto various adsorbent materials

机译:从水溶液中去除选定的多环芳烃到各种吸附剂材料上

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Adsorption of three polycyclic aromatic hydrocarbons (PAH) in one mixture, namely naphthalene (NA), phenanthrene (PH), and pyrene (PY), was tested using various adsorbent materials: Bone charcoal (B-l and B-2), Peat Moss (PM), Pyrolysis Residue (PR), Activated Rice Husk (RH), and powdered activated carbon (PAC). It was found that adsorption capacity RH carbon for PAH is comparable with the conventional adsorbent (PAC). Kinetics, equilibrium, and thermodynamic studies were carried out for the adsorption of selected PAH on RH carbon in single-component systems. Two days are sufficient contact time between each solute and the RH carbon. Intraparticle mechanism was proved for all compounds. Lang-muir, BET, Freundlich, Redlick-Peterson, Toth, Generalized and Fritz-Schluender isotherm equations were studied. It was found that the Freundlich isotherm for NA, Generalized isotherm for PH and BET isotherm for PY gave an excellent overall fit. The fitting was improved independent on the number of isotherm parameters. The calculated values of dimensionless separation factor R_L of NA, PH, and PY were between 0 and 1 supporting the adsorption of PAH compounds onto RH carbon is very favorable. The results indicated the exothermic nature of PH adsorption onto RH carbon. Thermodynamic parameter was determined. Comparison with other studies was investigated.
机译:使用各种吸附剂材料测试了三种混合物在三种混合物中的吸附性,即萘(NA),菲(PH)和pyr(PY)在三种混合物中的吸收能力:骨炭(B1和B-2),泥炭( PM),热解残留物(PR),活性稻壳(RH)和粉状活性炭(PAC)。已发现,对于PAH的吸附能力RH碳与常规吸附剂(PAC)相当。进行了动力学,平衡和热力学研究,以研究单组分系统中所选PAH在RH碳上的吸附。每种溶质与RH碳之间的接触时间为两天。证明了所有化合物的粒子内机理。研究了Lang-muir,BET,Freundlich,Redlick-Peterson,Toth,广义和Fritz-Schluender等温方程。结果发现,NA的Freundlich等温线,PH的广义等温线和PY的BET等温线具有很好的整体拟合度。独立于等温线参数的数量改进了拟合。 NA,PH和PY的无因次分离因子R_L的计算值介于0和1之间,这支持PAH化合物吸附到RH碳上非常有利。结果表明PH吸附在RH碳上的放热性质。确定热力学参数。与其他研究进行了比较。

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