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Sulfur removal from gasoline by pervaporation:The effect of hydrocarbon species

机译:通过全蒸发去除汽油中的硫:碳氢化合物的影响

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With the mixtures of different hydrocarbons and thiophene making up the model gasoline,PDMS membrane was used for sulfur removal from gasoline by pervaporation and the impact of different hydrocarbon species on the desulfurization efficiency was investigated experimentally.Experimental results of a series of alkane/thiophene mixtures indicated that,the total fluxes decrease with increase of carbon number in the alkane,while the enrichment factor of thiophene increases simultaneously.With the membrane having a normalized PDMS layer of 15 mu m,the total flux for n-octane/thiophene mixture was measured to be about 1.04 kg m!~(-2) h~(-1),with the corresponding enrichment factor of thiophene 4.4 at 31 deg C.Compared with alkanes,one or more double bonds in olefin molecules would provide them with a plane geometry and certainly facilitate their transport through the dense membrane.Pervaporation results of n-hexene-hexane/thiophene demonstrated that,the rise of concentration of n-hexene in the feed leads to a larger total flux,but a smaller enrichment factor for thiophene at the same time.In addition,the similar framework and electronic properties of aromatics and the coexisting aromatic sulfur heterocycles would result in negative influence for this desulfurization process.Experimental results indicated that,with the increase of the content of toluene in toluene-octane/thiophene mixtures,the total flux would increase while the enrichment factor of thiophene would decrease.For this system,the coupling effect should be taken into consideration for the further understanding or mathematical simulation of the transport process.
机译:以不同碳氢化合物和噻吩的混合物组成模型汽油,用PDMS膜通过渗透汽化去除汽油中的硫,并实验研究了不同碳氢化合物种类对脱硫效率的影响。一系列烷烃/噻吩混合物的实验结果结果表明,烷烃中总通量随碳原子数的增加而减少,而噻吩的富集因子同时增加。在PDMS归一化膜厚度为15μm的膜上,测定了正辛烷/噻吩混合物的总通量。约为1.04 kg m!〜(-2)h〜(-1),相应的噻吩在31摄氏度时的富集系数为4.4。与烷烃相比,烯烃分子中一个或多个双键将为它们提供一个平面己烯/正己烷/噻吩的全蒸发结果表明,正己烯在水中的浓度升高。进料导致较大的总通量,但同时导致噻吩的富集因子减小。此外,芳烃的相似骨架和电子性质以及共存的芳族硫杂环会对脱硫过程产生负面影响。结果表明,随着甲苯/正辛烷/噻吩混合物中甲苯含量的增加,总通量会增加,而噻吩的富集系数会降低。对于该系统,应进一步考虑偶联作用对运输过程的了解或数学模拟。

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