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Optimization of Deep Oxidative Desulfurization Process Using Ionic Liquid and Potassium Monopersulfate

机译:离子液体和单过硫酸钾对深度氧化脱硫工艺的优化

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Response surface methodology (RSM) was selected to optimize a desulfurization process with metal based ionic liquids ([Bmim]Cl/CoCl2) and potassium monopersulfate (PMS) together to remove benzothiophene (BT) from octane (simulating oil). The four experimental conditions of PMS dosage, [Bmim]Cl/CoCl2 dosage, temperature, and reaction time were investigated. The results showed that the quadratic relationship was built up between BT removal and four experimental variables with 0.9898 fitting coefficient. The optimal conditions were 1.6 g (20 wt%) PMS solution, 3.2 g [Bmim]Cl/CoCl2, 46°C, and 23 min, which were obtained based on RSM and experimental results. Under the optimal condition, predicted sulfur removal rate and experimental sulfur removal rate were 96.7% and 95.4%, respectively. The sequence of four experimental conditions on desulfurization followed the order temperature > time > [Bmim]Cl/CoCl2 dosage > PMS solution dosage.
机译:选择了响应表面方法(RSM),以优化基于金属的离子液体([Bmim] Cl / CoCl2)和单过硫酸钾(PMS)的脱硫工艺,以从辛烷(模拟油)中去除苯并噻吩(BT)。研究了PMS用量,[Bmim] Cl / CoCl2用量,温度和反应时间这四个实验条件。结果表明,BT去除与四个实验变量之间的二次关系建立,拟合系数为0.9898。最佳条件是基于RSM和实验结果获得的1.6μg(20%wt%)PMS溶液,3.2μg[Bmim] Cl / CoCl2、46°C和23μmin。在最佳条件下,预测的脱硫率和实验脱硫率分别为96.7%和95.4%。四种脱硫实验条件的顺序为:温度>时间> [Bmim] Cl / CoCl2用量> PMS溶液用量。

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