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Extractive desulfurization of liquid fuel by using a green, neutral and task specific phosphonium ionic liquid with glyceryl moiety: A joint experimental and computational study

机译:使用具有甘油基部分的绿色,中性和任务特定的phospho离子液体对液体燃料进行萃取脱硫:联合实验和计算研究

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A phosphonium ionic liquid with glyceryl moiety was synthesized and used as an efficient extractant in the removal of sulfur compounds from a model liquid fuel. The effects of different parameters such as volume ratio, time, initial concentration, temperature and type of sulfur compound on the desulfurization efficiency were investigated. The reusability and the recyclability of the described ionic liquid in the extractive desulfurization were also studied. For comparison, another ionic liquid with two acidic moieties was synthesized and used in the extractive desulfurization. To understand the mechanism of the extractive desulfurization by the phosphonium ionic liquid, a computational study consisting of structural investigations, interaction energy, NBO, AIM and EDA analysis on the type and nature of the interaction between dibenzothiophene (DBT) and the prepared ionic liquid was also performed. The obtained results of this research support the idea of rational design, synthesis and application of the task specific extractants for the green desulfurization of liquid fuels. (C) 2017 Elsevier Ltd. All rights reserved.
机译:合成了具有甘油基部分的phospho离子液体,并将其用作从模型液体燃料中去除硫化合物的有效萃取剂。研究了体积比,时间,初始浓度,温度和硫化合物类型等参数对脱硫效率的影响。还研究了所述离子液体在萃取脱硫中的可重复使用性和可回收性。为了比较,合成了具有两个酸性部分的另一种离子液体,并将其用于萃取脱硫。为了了解phospho离子液体萃取脱硫的机理,对结构进行了研究,相互作用能,NBO,AIM和EDA分析了二苯并噻吩(DBT)与制备的离子液体之间相互作用的类型和性质,从而进行了计算研究。也执行了。这项研究的结果支持合理设计,合成和应用特定任务的萃取剂用于液体燃料绿色脱硫的想法。 (C)2017 Elsevier Ltd.保留所有权利。

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