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Pyridinium-based temperature-responsive magnetic ionic liquid for oxidative desulfurization of fuels

机译:吡啶基温度响应性磁性离子液体,用于燃料的氧化脱硫

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摘要

A temperature-responsive magnetic ionic liquid (IL) N-butylpyridinium tetrachloroferrate ([BPy][FeCl4]) catalyst was prepared. Melting and solidification of [BPy][FeCl4] are reversible. In oxidative desulfurization process, the thermoregulated formation of liquid-liquid extractive and catalytic oxidation desulfurization system (ECODS) containing model oil, hydrogen peroxide and [BPy][FeCl4] was observed at 40 °C and higher sulfur removal was detected. After finishing reaction and cooling temperature, reaction system returns to liquid-solid state. Moreover, [BPy][FeCl4] exhibits a strong response to a magnet and can be easily separated from model oil by applying an external magnetic field, achieving five times recycling without significant decrease in activity. The effect of oxidative desulfurization of model oil with dibenzothiophene (DBT), benzothiophene (BT) and 4,6-dimethyldibenzothiophene (4,6-DMDBT) was investigated, which reveals fast oxidative desulfurization ability. The sulfur removal of DBT, BT and 4,6-DMDBT could reach 95.3%, 75.0% and 54.8% in [BPy]FeCl4 for only 10 min. The amount of [BPy][FeCl4], H2O2/DBT molar ratio, temperature and the composition of [BPy][FeCl4] all played vital roles in desulfurization efficiency, which were also studied in detail to optimize the reaction conditions.
机译:制备了温度响应型磁性离子液体(IL)四氯高铁酸正丁基吡啶鎓([BPy] [FeCl4])催化剂。 [BPy] [FeCl4]的熔化和固化是可逆的。在氧化脱硫过程中,在40°C时观察到了含有模型油,过氧化氢和[BPy] [FeCl4]的液-液萃取和催化氧化脱硫系统(ECODS)的热调节结构,并检测到更高的脱硫率。在完成反应和冷却温度之后,反应系统返回到液固状态。此外,[BPy] [FeCl4]对磁体表现出强烈的响应,并且可以通过施加外部磁场轻松地从模型油中分离出来,实现五次循环而不会显着降低活性。研究了模型油与二苯并噻吩(DBT),苯并噻吩(BT)和4,6-二甲基二苯并噻吩(4,6-DMDBT)的氧化脱硫效果,显示了快速的氧化脱硫能力。在[BPy] FeCl4中,仅10分钟,DBT,BT和4,6-DMDBT的脱硫率可分别达到95.3%,75.0%和54.8%。 [BPy] [FeCl4]的量,H2O2 / DBT的摩尔比,温度和[BPy] [FeCl4]的组成均对脱硫效率起着至关重要的作用,并对其进行了详细研究以优化反应条件。

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