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首页> 外文期刊>Journal of Molecular Liquids >Thermodynamics and kinetics of the removal of nickel (II) ions from aqueous solutions by biochar adsorbent made from agro-waste walnut shells
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Thermodynamics and kinetics of the removal of nickel (II) ions from aqueous solutions by biochar adsorbent made from agro-waste walnut shells

机译:通过Biochar吸附剂从Agro-Walnut壳制成的水溶液中除去镍(II)离子的热力学和动力学

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Biochar adsorbent (WSBA) classified as a microporous material was obtained via thermal degradation of walnut shells in a nitrogen atmosphere. WSBA was used to remove Ni(II) ions from model aqueous solutions. The thermodynamics and kinetics of the adsorption process were studied on the basis of series of experiments which were conducted under constant agitation, temperatures of 288, 293, 298 and 303 K, and initial solution concentrations of 5, 50, 100 and 150 mg L-1. Pseudo-second-order kinetic equation was in competition with diffusion-chemisorption kinetic model as the best-fitting kinetic model. The adsorption process was well described with the Langmuir isotherm but the best-fitting one is Toth isotherm model. On its basis, the values of Delta G degrees, Delta H degrees and Delta S degrees were calculated. The thermodynamic parameters showed that the adsorption of Ni(II) ions onto WSBA was spontaneous at all temperatures. The detailed analysis of the data for the explored adsorbent-adsorbate system found out that the adsorption mechanism is ion exchange. It was proven that WSBA could be used as an effective biochar adsorbent for removal of Ni(II) ions from water solutions as an alternative to commercial activated carbons. (C) 2020 Published by Elsevier B.V.
机译:通过在氮气氛中的核桃壳的热降解获得分类为微孔材料的生物炭吸附剂(WSBA)。 WSBA用于从模型水溶液中除去Ni(II)离子。研究了吸附过程的热力学和动力学,基于恒定搅拌,288,293,298和303k,初始溶液浓度为5,50,100和150mg的初始实验进行了研究。 1。伪二阶动力学方程与扩散 - 化学吸附动力学模型竞争,作为最合适的动力学模型。吸附过程很好地用Langmuir等温线描述,但最合适的是Toth等温线模型。在其基础上,计算了Delta G度,ΔH度和δS度的值。热力学参数表明,在所有温度下,将Ni(II)离子的吸附在WSBA上是自发的。对探索吸附剂 - 吸附系统的数据进行详细分析,发现吸附机制是离子交换。据证明,WSBA可用作用于从水溶液中除去Ni(II)离子的有效生物炭吸附剂,作为商业活性炭的替代品。 (c)2020由elsevier b.v发布。

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