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Kinetic of nickel (II) removal from aqueous solution using different particle size of water-cooled blast furnace slag

机译:使用不同粒径的水冷高炉矿渣从水溶液中去除镍(II)的动力学

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The adsorption of nickel (II) from aqueous solution onto different particle sizes of water-cooled blast furnace slag (WCBFS) was investigated. Batch experiments were performed to study the effect of contact time, initial concentration of nickel ions, initial pH of the solution, and temperature. The data was fitted to Langmuir and Freundlich isotherm models. The results showed that the Langmuir model better fitted the data obtained for the large-sized particles, while that for the finer-sized particles followed the Freundlich model best. Overall, the process was considered a second-order reaction which involved some degree of intraparticle diffusion. The calculated energy of activation indicated that it was a chemisorption process for both fine- and coarse-sized particles. In conclusion, the finest WCBFS particle size (0.3 mm) showed a good potential as an adsorbent to remove this divalent metal ions from solution.
机译:研究了水冷高炉矿渣(WCBFS)在不同粒径的水溶液中对镍(II)的吸附。进行批处理实验以研究接触时间,镍离子初始浓度,溶液的初始pH值和温度的影响。数据适合Langmuir和Freundlich等温线模型。结果表明,Langmuir模型更好地拟合了大颗粒的数据,而细颗粒的数据最符合Freundlich模型。总的来说,该过程被认为是涉及某种程度的颗粒内扩散的二级反应。计算出的活化能表明,这是细颗粒和粗颗粒的化学吸附过程。总之,最细的WCBFS粒度(0.3毫米)具有良好的潜力,可作为吸附剂从溶液中去除该二价金属离子。

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