室温下芬顿类离子液体催化燃料的氧化脱硫。

Oxidative desulfurization of fuels catalyzed by Fenton-like ionic liquids at room temperature.

机构信息

College of Chemistry and Chemical Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang 212013, PR China.

出版信息

ChemSusChem. 2011 Mar 21;4(3):399-403. doi: 10.1002/cssc.201000251. Epub 2011 Jan 11.

Abstract

Oxidation of the sulfur-containing compounds benzothiophene (BT), dibenzothiophene (DBT), and 4,6-dimethyldibenzothiophene (4,6-DMDBT) has been studied in a desulfurization system composed of model oil, hydrogen peroxide, and different types of ionic liquids [(C(8)H(17))(3)CH(3)N]Cl/FeCl(3), [(C(8)H(17))(3)CH(3)N]Cl/CuCl(2), [(C(8)H(17))(3)CH(3)N]Cl/ZnCl(2), [(C(8)H(17))(3)CH(3)N]Cl/SnCl(2), [(C(4)H(9))(3)CH(3)N]Cl/FeCl(3), [C(10)H(21)(CH(3))(3)N]Cl/FeCl(3), [(C(10)H(21))(2)(CH(3))(2)N]Cl/FeCl(3). Deep desulfurization is achieved in the Fenton-like ionic liquid [(C(8)H(17))(3)CH(3)N]Cl/FeCl(3) at 25 °C for 1 h. The desulfurization of DBT reaches 97.9%, in consuming very low amount of [(C(8)H(17))(3)CH(3)N]Cl/FeCl(3) (only 0.702 mmol). The reaction conditions, for example, the amount of [(C(8)H(17))(3)CH(3)N]Cl/FeCl(3) or H(2)O(2), the temperature, and the molar ratio of FeCl(3) to [(C(8)H(17))(3)CH(3)N]Cl, are investigated for this system. The oxidation reactivity of the different sulfur-containing compounds is found to decrease in the order of DBT>BT>4,6-DMDBT. The desulfurization system can be recycled six times without significant decrease in activity. The sulfur level of FCC gasoline could be reduced from 360 ppm to 110 ppm.

摘要

研究了由模型油、过氧化氢和不同类型的离子液体组成的脱硫体系中苯并噻吩(BT)、二苯并噻吩(DBT)和 4,6-二甲基二苯并噻吩(4,6-DMDBT)的氧化反应。[(C(8)H(17))(3)CH(3)N]Cl/FeCl(3)、[(C(8)H(17))(3)CH(3)N]Cl/CuCl(2)、[(C(8)H(17))(3)CH(3)N]Cl/ZnCl(2)、[(C(8)H(17))(3)CH(3)N]Cl/SnCl(2)、[(C(4)H(9))(3)CH(3)N]Cl/FeCl(3)、[C(10)H(21)(CH(3))(3)N]Cl/FeCl(3)、[(C(10)H(21))(2)(CH(3))(2)N]Cl/FeCl(3)。在 25°C 下,Fenton 型离子液体[(C(8)H(17))(3)CH(3)N]Cl/FeCl(3)中反应 1 小时可实现深度脱硫。DBT 的脱硫率达到 97.9%,消耗的[(C(8)H(17))(3)CH(3)N]Cl/FeCl(3)非常少(仅 0.702mmol)。研究了该体系的反应条件,如[(C(8)H(17))(3)CH(3)N]Cl/FeCl(3 或 H(2)O(2)的用量、温度和 FeCl(3)与[(C(8)H(17))(3)CH(3)N]Cl 的摩尔比。发现不同含硫化合物的氧化反应活性按 DBT>BT>4,6-DMDBT 的顺序降低。脱硫体系可循环使用六次,活性无明显下降。FCC 汽油的硫含量可从 360ppm 降低到 110ppm。

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