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Liquid Membrane Permeation of Nitrogen Heterocyclic Compounds Contained in Model Coal Tar Fraction

机译:模型煤焦油馏分中所含氮杂环化合物的液膜渗透

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摘要

We investigated the separation of nitrogen heterocyclic compound (NHC) contained in a model coal tar fraction comprising four kinds of NHC [indole (In), quinoline (Q), iso-quinoline (iQ), quinaldine (Qu)], three kinds of bicyclic aromatic compound (BAC) [1-methylnaphthalene (1MN), 2-methymaphthalene(2MN), dimethylnaphthalene (DMN) mixture with ten structural isomers (DMNs; regarded as one component)], biphenyl (Bp) and phenyl ether (Pe) by liquid membrane permeation (LMP). A batch-stirred tank was used as the permeation unit. An aqueous solution of saponin and n-hexane were used as the liquid membrane and the outer oil phase, respectively. Yield and selectivity of individual NHC was much larger than that of BAC, Bp and Pe. Increasing the initial mass fraction of the saponin to the membrane solution (C_(sap,0)) and the initial volume fraction of O/W emulsion to total liquid in a stirred tank (φ_(OW,0)) resulted in deteriorating the yield of individual NHC, but increasing the stirring speed (N) resulted in improving the yield of each NHC. With increasing C_(sap,0), the selectivity of each NHC based on DMNs increased. Increasing φ_(OW,0)and N resulted in decreasing the selectivity of individual NHC based on DMNs. At an experimental condition fixed, the sequence of the yield and selectivity in reference to DMNs for each NHC was Q > Qu = iQ > In. Furthermore, we compared LPM method with methanol extraction method in view of the separation efficiency (yield, selectivity) of NHC.
机译:我们调查了模型煤焦油馏分中所含氮杂环化合物(NHC)的分离情况,该馏分包含四种NHC [吲哚(In),喹啉(Q),异喹啉(iQ),喹诺定(Qu)],三种双环芳族化合物(BAC)[1-甲基萘(1MN),2-甲基萘(2MN),二甲基萘(DMN)与十个结构异构体(DMN;被视为一种组分)的混合物],联苯(Bp)和苯醚(Pe)通过液膜渗透(LMP)。使用分批搅拌的罐作为渗透单元。皂苷和正己烷的水溶液分别用作液膜和外油相。单个NHC的收率和选择性远高于BAC,Bp和Pe。皂素在膜溶液中的初始质量分数(C_(sap,0))和O / W乳液在搅拌釜中的总液体中初始体积分数(φ_(OW,0))的增加导致收率下降NHC的使用量增加,但提高搅拌速度(N)可以提高每种NHC的收率。随着C_(sap,0)的增加,每个基于DMN的NHC的选择性都增加了。 φ_(OW,0)和N的增加导致基于DMN的单个NHC的选择性降低。在固定的实验条件下,每个NHC相对于DMN的收率和选择性的顺序为Q> Qu = iQ> In。此外,考虑到NHC的分离效率(产率,选择性),我们将LPM方法与甲醇萃取方法进行了比较。

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