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首页> 外文期刊>Royal Society Open Science >Extractive desulfurization of liquid fuel using diamine-terminated polyethylene glycol as a very low vapour pressure and green molecular solvent
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Extractive desulfurization of liquid fuel using diamine-terminated polyethylene glycol as a very low vapour pressure and green molecular solvent

机译:用二胺封端的聚乙二醇作为非常低的蒸气压和绿色分子溶剂萃取液体燃料的脱硫

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摘要

Removal of sulfur compounds from liquid fuel is one of the important issues in the field of energy and environment. Among the available methods, extractive desulfurization (EDS) is of great interest due to its convenient operating conditions. In this study, EDS performance of 4,7,10-trioxatridecane-1,13-diamine (TTD), a very low vapour pressure diamine-terminated oligomeric polyethylene glycol (PEG), was studied. Effect of the influencing factors, as well as multiple extraction, mutual solubility, reusability and regeneration of TTD were investigated. Results showed that the TTD/fuel volume ratio of 0.5 could extract benzothiophene, dibenzothiophene and dimethyl dibenzothiophene with the efficiencies 67%, 74% and 53%, respectively, in less than 1 min at ambient temperature. The distribution coefficient ( K N ) value for removal of dibenzothiophene by TTD was 3.66 higher than that of PEG, and it is similar to K N values (approx. 4) for polyethylene glycol dimethyl ether (as a modified PEG) and Lewis acid-containing ionic liquids. It was observed that spent TTD after five cycles could be regenerated using the back-extraction method. Also, deep EDS was achievable after three times extraction using fresh TTD. Finally, the extraction mechanism was studied using 1 H-NMR. These observations, as well as very low vapour pressure and insignificant dependency of TTD on the initial S-concentration of fuel and temperature, make this extractant to be introduced as a valuable option for green and effective EDS.
机译:从液体燃料中除去硫化合物是能量和环境领域的重要问题之一。在可用的方法中,由于其方便的操作条件,提取脱硫(EDS)具有很大的兴趣。在该研究中,研究了4,7,10-三可以丙烷-1,13-二胺(TTD)的EDS性能,非常低蒸气压二胺封端的低聚聚乙二醇(PEG)。研究了影响因素的影响,以及多种提取,相互溶解性,可重用性和TTD的再生。结果表明,0.5的TTD /燃料体积比可以在环境温度下分别在少于1分钟内分别提取苯并噻吩,二苯并噻吩和二甲基二苯甲酸苯并噻吩,在少于1分钟内。用于通过TTD除去二苯并噻吩的分布系数(KN)值比PEG高3.66,并且类似于聚乙二醇二甲醚(作为改性PEG)和含路易斯酸离子的KN值(约4)液体。观察到,可以使用背提取方法再生五个循环后的TTD。此外,使用新鲜TTD三次提取后,深针可实现。最后,使用1 H-NMR研究提取机理。这些观察结果以及TTD在燃料和温度的初始S浓度上非常低的蒸气压和微不足道的依赖性,使得该萃取剂作为绿色和有效EDS的有价值的选择。

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