首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Desulfurization of liquid fuels by adsorption on carbon-based sorbents and ultrasound-assisted sorbent regeneration
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Desulfurization of liquid fuels by adsorption on carbon-based sorbents and ultrasound-assisted sorbent regeneration

机译:通过吸附在碳基吸附剂上和超声辅助吸附剂再生来对液体燃料进行脱硫

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Several carbon-based adsorbents, CuCl/AC, PdCl2/AC, and Pd/AC (where AC denotes activated carbon), were studied for desulfurization of a model jet fuel by selective adsorption of thiophenic molecules. Comparisons with gamma-Al2O3 support and desulfurization of a commercial jet fuel were also studied. The results showed that the selective sulfur adsorption capacity of PdCl2 was higher than that of CuCl and Pd-0, in agreement with molecular orbital results. It was also found that the activated carbon is the best support for pi-complexation sorbents to remove sulfur-containing compounds, i.e., benzothiophene and methylbenzothiophene. Among all the adsorbents studied, PdCl2/AC had the highest capacity for desulfurization. A significant synergistic effect was observed between the carbon substrate and the supported pi-complexation sorbent, and this effect was explained by a geometric effect. The saturated sorbent was regenerated by desorption assisted by ultrasound with a solvent of 30 wt % benzene and 70 wt % n-octane. The results showed that the amount of sulfur desorbed was higher with ultrasound, 65 wt % desorption vs 45 wt % without ultrasound in a static system at 50 degrees C.
机译:研究了几种碳基吸附剂CuCl / AC,PdCl2 / AC和Pd / AC(其中AC表示活性炭),用于通过选择性吸附噻吩分子对模型喷气燃料进行脱硫。还研究了与γ-Al2O3载体的比较以及商业喷气燃料的脱硫。结果表明,PdCl2的选择性硫吸附能力高于CuCl和Pd-0,与分子轨道结果相符。还发现,活性炭是π-络合吸附剂去除含硫化合物即苯并噻吩和甲基苯并噻吩的最佳载体。在所有研究的吸附剂中,PdCl2 / AC具有最高的脱硫能力。在碳底物和负载的pi络合吸附剂之间观察到了显着的协同效应,这种效应可以用几何效应来解释。通过在30wt%的苯和70wt%的正辛烷的溶剂的超声辅助下的解吸来再生饱和吸附剂。结果表明,在50°C的静态系统中,超声下的脱附硫量更高,解吸量为65 wt%,而超声下则为45 wt%。

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