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Removal of naphthenic acids using activated charcoal: Kinetic and equilibrium studies

机译:使用活性炭除去环烷酸:动力学和平衡研究

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This study proposes the use of activated charcoal made from Umbauba wood as an adsorbent for the removal of naphthenic acid in an aviation kerosene model mixture. The activated charcoal was characterised as mesoporous with a carbon graphite profile and presented pH(pzc) equal to 10.5. The best working conditions were obtained for activated charcoal levels of 0.09 mm and 300 r min(-1). The system reached the equilibrium after 360 min, without significant statistical difference for the pseudo-first- and pseudo-second-order kinetic models. The Weber-Morris and Boyd models corroborated the conclusion that adsorption is not controlled only by the intraparticle diffusion step. For the equilibrium study, the adsorptive capacity obtained was of 1.1 g g(-1), with the Brunauer-Emmett-Teller model better correlating with the experimental data. Given the results obtained, the activated charcoal demonstrated to have a remarkable potential for removing naphthenic acid in an aviation kerosene model mixture.
机译:本研究提出了使用由Umbauba木材制成的活性炭作为吸附剂,用于在航空酮糖模型混合物中除去环烷酸。活性炭的表征为碳石墨曲线的介孔,并呈现等于10.5的pH(PZC)。获得最佳的工作条件,用于& 0.09mm和300 r min(-1)的活性炭水平。 360分钟后系统达到平衡,对伪第一和伪二阶动力学模型而没有显着的统计差异。 Weber-Morris和Boyd模型证实了得出的结论,仅通过粒前扩散步骤无法控制吸附。对于均衡研究,获得的吸附能力为1.1g g(-1),Brunauer-emmett-teller模型与实验数据更好地相关。得到得到的结果,所示活化的木炭证明具有在航空煤油模型混合物中除去环烷酸的显着电量。

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