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首页> 外文期刊>Chemical engineering journal >A task-specific phosphonium ionic liquid as an efficient extractant for green desulfurization of liquid fuel: An experimental and computational study
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A task-specific phosphonium ionic liquid as an efficient extractant for green desulfurization of liquid fuel: An experimental and computational study

机译:特定任务的phospho离子液体作为液体燃料绿色脱硫的有效萃取剂:一项实验和计算研究

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Desulfurization of fuel is essential to be done from the environmental and industrial points of view. Extractive desulfurization (EDS) is one of the most promising methods in order to meet statutory sulfur content. Among of various extractants, ionic liquids (ILs) are more suitable ones due to their desirable and compatible properties having green chemistry disciplines. This work shows that tributyl(carboxymethyl) phosphonium bromide [TBCMP][Br], as a task-specific phosphonium ionic liquid (PIL) including acetic acid moiety, is able to extract benzothiophenic compounds from liquid fuel, successfully. A series of experiments were done to determine the effect of PIL/fuel volume ratio, time, temperature, multiple extraction and initial concentration on EDS performance of [TBCMP][Br]. The efficiency of extraction for sulfur compounds was determined and obeyed the order of dibenzothiophene > benzothiophene > dimethyldibenzothiophene at 69%, 53% and 40%, respectively. For the volume ratio 0.5 in 15 min at room temperature, deep desulfurization can obtain after four extraction times. Finally, the extraction mechanism of PIL, especially the role of acetic acid moiety, was studied experimentally and theoretically for the first time. The computational results show that the alpha hydrogens of methylene groups, connected to phosphonium core and hydrogen of acetic acid moiety, provide hydrogen bonding interaction which indicate [TBCMP][Br] acts as a bi-functional IL for EDS. So, the present work is supposed to create a new and promising insight into the courses of rational designs, syntheses and applications of task-specific ionic liquids for green desulfurization. (C) 2016 Elsevier B.V. All rights reserved.
机译:从环境和工业的角度来看,燃料的脱硫是必不可少的。为了达到法定的硫含量,萃取脱硫(EDS)是最有前途的方法之一。在各种萃取剂中,由于离子液体(ILs)具有绿色化学学科的要求且具有相容性,因此更适合使用。这项工作表明,三丁基(羧甲基)溴化[[TBCMP] [Br]作为包含乙酸部分的特定任务的离子液体(PIL),能够成功地从液体燃料中提取苯并噻吩化合物。进行了一系列实验以确定PIL /燃料体积比,时间,温度,多次萃取和初始浓度对[TBCMP] [Br]的EDS性能的影响。确定了硫化合物的提取效率,并分别遵循二苯并噻吩>苯并噻吩>二甲基二苯并噻吩的顺序,分别为69%,53%和40%。对于室温下15分钟内的体积比为0.5,经过四次萃取可得到深度脱硫。最后,首次在实验和理论上研究了PIL的提取机理,尤其是乙酸部​​分的作用。计算结果表明,与phospho核和乙酸部分的氢连接的亚甲基的α氢提供了氢键相互作用,表明[TBCMP] [Br]充当EDS的双官能IL。因此,目前的工作应该为绿色脱硫的特定任务离子液体的合理设计,合成和应用过程提供新的前景。 (C)2016 Elsevier B.V.保留所有权利。

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