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Characterization of cobalt ferrite-supported activated carbon for removal of chromium and lead ions from tannery wastewater via adsorption equilibrium

机译:吸附平衡法表征钴铁氧体负载活性炭以去除制革废水中的铬和铅离子

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In this experiment,cobalt ferrite-supported activated carbon(CF-AC)was developed and characterized via the wet impregnation method for the removal of Cr and Pb(II)ions from tannery wastewater.Batch adsorption was carried out to evaluate the effect of experimental operating conditions(pH of solution,contact time,adsorbent dose,and temperature),and the removal efficiencies of Cr and Pb(II)ions by the developed adsorbents were calculated and recorded for all experimental conditions.These variables were estimated and reported as removal efficiencies of 98.2%for Cr and 96.4%for Pb(II)ions at the optimal conditions of 5,0.8 g,80 min,and 333 K for pH,adsorbent dose,contact time,and temperature,respectively.The equilibrium for the sorption of Cr and Pb(II)ions was studied using four widely used isotherm models(the Langmuir,Freundlich,Dubinin-Radushkevich,and Temkin isotherm models).It was found that the Freundlich isotherm model fit better with the coefficient of determination(R2)of 0.9484 and a small sum of square error of 0.0006.The maximum adsorption capacities(Qm)of Pb(II)and Cr adsorbed onto CF-AC were determined to be 6.27 and 23.6 mg/g,respectively.The adsorption process conformed well to pseudo-second order kinetics as revealed by the high R2 values obtained for both metals.The thermodynamic parameters showed that adsorption of Cr and Pb(II)ions onto CF-AC was spontaneous,feasible,and endothermic under the studied conditions.The mean adsorption energy(E)values revealed that the adsorption mechanism of Cr and Pb(II)by CF-AC is physical in nature.The results of the study showed that adsorbent developed from CF-AC can be efficiently used as an environmentally friendly alternative adsorbent,for removal of Cr and Pb(II)ions in tannery wastewater.
机译:在该实验中,通过湿浸渍方法开发并表征钴铁氧体负载的活性炭(CF-AC),用于从Tannery废水中除去Cr和Pb(II)离子。进行吸附以评估实验的效果计算并记录所有实验条件的操作条件(溶液,接触时间,吸附剂剂量和温度)和Cr和Pb(II)离子的去除效率,并记录了所有实验条件。这些变量估计并报告为去除CR的效率为98.2%,Pb(II)离子在5,0.8g,80分钟和333k的最佳条件下,分别为pH,吸附剂剂量,接触时间和温度,Pb(II)离子96.4%。用于吸附的均衡研究了CR和Pb(II)离子使用四种广泛使用的等温线(Langmuir,Freundlich,Dubinin-Radushkevich和Temkin等温线模型)研究。发现Freundlich等温模型适合测定系数(R2) 0.9484和小总和为0.0006.分别测定吸附在CF-AC上的Pb(II)和Cr的最大吸附容量(QM)分别为6.27和23.6mg / g。吸附过程符合伪秒用对两个金属获得的高R2值揭示的顺序动力学。热力学参数显示Cr和Pb(II)离子在CF-Ac上的吸附是自发的,可行的,并且在所研究的条件下吸热。平均吸附能量(例如)值表明,CF-AC的Cr和Pb(II)的吸附机制是物质的。该研究结果表明,由CF-AC产生的吸附剂可以有效地用作环保替代吸附剂,以便去除Tannery废水中的Cr和Pb(II)离子。

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