Kinetic and isotherm evaluation of o-cresol adsorption on activated carbon procured from olive pomace

Q3 Engineering
Salima Choukchou Braham, Zoubida Taleb, Soumia Djeziri, Hadja Djellouli
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引用次数: 0

Abstract

This article aims to apply an activated carbon on the adsorption of o-cresol in an aqueous medium. Our work presents a double environmental aspect: On one hand, a valorization of under-natural products, which is the olive pomace and on the other hand, the study of the adsorbent efficiency of the activated carbon resulting from these cores. Activated carbon is prepared with chemical activation of olive pomace using H3PO4. The characterization of this porous material has shown a specific surface area equal to 651 m2/g with the presence of mesopores. Various parameters influencing the adsorption were optimized, mainly the effect of the contact time, initial concentration of o-cresol and pH of the solution were studied. The experimental results show that the sorption equilibrium is reached within 60 min with an adsorption yields of 83.66%. Indeed, the experimental adsorbed quantity of adsorbent is 3.82 mg/g with o-cresol concentration of 50 mg/L, T = 30?C and pH 2.6 for the better adsorption. The adsorption process was also studied by examining Langmuir, Freundlich, Temkin isotherm, and Dubinin-Radushkevich (D-R) isotherm models. The results revealed that the adsorption system followed the pseudo-second order model and the Freundlich model. Several thermodynamic factors, namely, the standard free energy (?Gads), enthalpy (?Hads), and entropy (?Sads) changes, were also calculated. The results demonstrated that the adsorption process is a physical and endothermic. The obtained results are interesting, and applications on other pollutants, in wastewater are in progress.
橄榄渣活性炭吸附邻甲酚的动力学及等温线评价
研究了活性炭在水介质中对邻甲酚的吸附。我们的工作呈现了双重环境方面:一方面,对橄榄渣等非天然产物的评价,另一方面,对这些核产生的活性炭的吸附效率的研究。采用H3PO4对橄榄渣进行化学活化制备活性炭。该多孔材料的表征表明,在存在介孔的情况下,其比表面积为651 m2/g。对影响吸附性能的参数进行了优化,主要考察了接触时间、邻甲酚初始浓度和溶液pH对吸附性能的影响。实验结果表明,在60 min内达到吸附平衡,吸附率为83.66%。在邻甲酚浓度为50 mg/L时,吸附剂的实验吸附量为3.82 mg/g, T = 30?C和pH为2.6,吸附效果较好。采用Langmuir、Freundlich、Temkin等温线和Dubinin-Radushkevich (D-R)等温线模型研究了吸附过程。结果表明,吸附体系符合拟二阶模型和Freundlich模型。计算了标准自由能(Gads)、焓(Hads)和熵(Sads)的变化。结果表明,吸附过程为物理吸热吸附过程。所获得的结果是有趣的,并且在废水中其他污染物的应用正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Periodica Technologica
Acta Periodica Technologica Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
0
审稿时长
8 weeks
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