Kinetic and Thermodynamic Study of the Elimination of Remazol Black on Activated Carbon Based on <i>Ricinodendron heudelotii</i> Shells

Kouakou Yao Urbain, Kambiré Ollo, Eroi N’goran Sévérin, Koné Yétchié Tchonrontcha, Trokourey Albert
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Abstract

Activated carbon made from the shells of Ricinodendron heudelotii was used to remove the remazol black dye in aqueous solution. The results of the characterization of this carbon revealed that it is microporous, with a basic global surface (0.337 mmol/L) and a specific surface of 612 m2/g. The prepared carbon therefore has excellent adsorbent properties. Kinetic and thermodynamic studies were carried out to describe the adsorption mechanism of remazol black on this carbon. It appears from this study that the pseudo-second-order kinetic model is the best suited to describe this adsorption phenomenon with an equilibrium time of 200 min. The adsorption equilibrium study revealed that Langmuir and Freundlich models can help to describe the adsorption process. We note that the optimum pH and optimum mass for the removal of 20 mg/L of remazol black are 3 and 0.25 g, respectively. This carbon made it possible to eliminate more than 98% of the remazol dye in aqueous solution. The thermodynamic study revealed that the adsorption is of the physisorption type, spontaneous and endothermic.
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基于</ amp;gt;蓖麻的活性炭去除雷马唑黑的动力学和热力学研究贝壳
以蓖麻壳为原料制备活性炭,用于去除水中的雷马唑黑色染料。表征结果表明,该碳具有微孔结构,基本总表面积为0.337 mmol/L,比表面积为612 m2/g。因此制备的碳具有优异的吸附剂性能。对雷马唑黑在该碳上的吸附机理进行了动力学和热力学研究。研究表明,拟二级动力学模型最适合描述这种平衡时间为200 min的吸附现象。吸附平衡研究表明,Langmuir和Freundlich模型有助于描述吸附过程。我们注意到去除20 mg/L雷马唑黑的最佳pH和最佳质量分别为3和0.25 g。这种碳可以消除水溶液中98%以上的雷马唑染料。热力学研究表明,该吸附为自然吸附型吸热吸附。
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