首页> 外文期刊>Journal of Molecular Liquids >Investigation of the adsorption mechanism of methylene blue (MB) on Cortaderia selloana flower spikes (FSs) and on Cortaderia selloana flower spikes derived carbon fibers (CFs)
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Investigation of the adsorption mechanism of methylene blue (MB) on Cortaderia selloana flower spikes (FSs) and on Cortaderia selloana flower spikes derived carbon fibers (CFs)

机译:亚甲基蓝(MB)吸附机制对Cortaderia Selloana花钉(FSS)和Cortaderia Selloana花穗衍生的碳纤维(CFS)

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In this article, a theoretical study was performed in order to elucidate the adsorption mechanism of methylene blue (MB) on Cortaderia selloana flower spikes (FSs) and on Cortaderia selloana flower spikes derived carbon fibers (CFs). For this objective, the Hill model developed using grand canonical ensemble was successfully applied. This model represents the general case of Langmuir model assuming that the receptor sites of CFs and FSs accepts a variable number of MB molecules and is defined by the number of molecules captured per adsorbent site (n). Based on the model parameters, the MB adsorption geometry was described at different temperatures indicating that the MB molecules were fixed by an angled position on the investigated adsorbents. The elucidation of the adsorption capacity showed that CFs was more effective for removing MB from wastewater than FSs. This behavior was detailed and corroborated by an energetic investigation. Moreover, the adsorption energy varies from 22.187 to 25.378 kJ mol(-1) for FSs and from 24.503 to 27.412 kJ mol(-1) for the CFs reflecting a physisorption process. Interestingly, and based on this energetic investigation, it was deduced that the adsorption mechanism of MB was endothermic. Excellent correlation between the number of molecules captured by the receptor site, the adsorption capacity, and the adsorption energy was observed. (C) 2019 Published by Elsevier B.V.
机译:在本文中,进行了一个理论研究,以阐明亚甲基蓝(MB)对Cortaderia Selloana花尖峰(FSS)和Cortaderia Selloana花穗衍生碳纤维(CFS)的吸附机制。为此目的,成功应用了使用Grand Canonical Ensemble开发的山丘模型。该模型代表了Langmuir模型的一般情况,假设CFS和FSS的受体位点接受可变数量的MB分子,并且由每种吸附位点(N)捕获的分子数定义。基于模型参数,在不同温度下描述了MB吸附几何形状,表明MB分子通过在研究的吸附剂上的角度定位固定。吸附能力的阐明表明,CFS比FSS从废水中除去MB更有效。这种行为被充满活力的调查详述和证实。此外,吸附能量从FSS的22.187至25.378 kJ摩尔(-1)变化,24.503至27.412 kJ mol(-1),用于反映出物理化过程的CF。有趣的是,基于这种能量调查,推导出MB的吸附机制是吸热的。观察到受体部位捕获的分子数,吸附能力和吸附能之间的优异相关性。 (c)2019年由elestvier b.v发布。

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