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Nickel (Ⅱ ) Adsorption from Aqueous Solutions by Physico-Chemically Modified Sewage Sludge

机译:镍(Ⅱ)物理化学改性污泥从水溶液吸附

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This study assesses the potential of activated carbon prepared from sewage sludge for nickel ions adsorption from aqueous solutions. Activated carbon physicochemical properties were determined. Batch adsorption experiments were performed as a function of pH solution, adsorbent dose, initial metal ions concentration, contact time and temperature. The experimental data were analyzed by the Langmuir, Freundlich, and Temkin isotherm models. The Freundlich model showed a better representation of equilibrium data (R-20.99) and the Langmuir monolayer adsorption capacity of activated carbon was found to be 11.52 mg/g. The kinetics of nickel ions was discussed using different kinetic models and the adsorption experiments indicated that the pseudo-second-order model well fitted the kinetic data (R-2=0.999). Thermodynamic parameters have also been evaluated. It was found that the adsorption process was feasible, spontaneous and endothermic. Desorption experiment and recovery of Ni(II) ions from activated carbon was found to be 100 % using hydrochloric acid. The results suggest that the activated carbon prepared from sewage sludge could be used beneficially for nickel adsorption from aqueous solutions for environmental cleaning purpose.
机译:该研究评估了由镍离子吸附的污水污泥制备的活性炭的潜力从水溶液中吸附。确定活性炭物理化学性质。作为pH溶液,吸附剂剂量,初始金属离子浓度,接触时间和温度的函数进行批量吸附实验。 Langmuir,Freundlich和Temkin等温线模型分析了实验数据。 Freundlich模型显示出更好的均衡数据表示(R-2> 0.99),发现活性炭的Langmuir单层吸附能力为11.52mg / g。使用不同的动力学模型讨论了镍离子的动力学,并且吸附实验表明,伪二阶模型井拟合动力学数据(R-2 = 0.999)。还评估了热力学参数。发现吸附过程是可行的,自发性和吸热。从活性炭中解吸试验和Ni(II)离子的回收率使用盐酸为100%。结果表明,由污水污泥制备的活性炭可有利地用于从含水溶液中吸附的环境清洁用途。

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