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Investigation of Influential Parameters in Deep Oxidative Desulfurization of Dibenzothiophene with Hydrogen Peroxide and Formic Acid

机译:过氧化氢和甲酸对二苯并噻吩进行深度氧化脱硫的影响参数研究

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摘要

An effective oxidative system consisting of hydrogen peroxide, formic acid, and sulfuric acid followed by an extractive stage were implemented to remove dibenzothiophene in the simulated fuel oil. The results revealed such a great performance in the case of H2O2 in the presence of formic and sulfuric acids that led to the removal of sulfur compounds. Sulfuric acid was employed to increase the acidity of media as well as catalytic activity together with formic acid. The oxidation reaction was followed by a liquid-liquid extraction stage using acetonitrile as a polar solvent to remove produced sulfones from the model fuel. The impact of operating parameters including the molar ratio of formic acid to sulfur (n_F_s), hydrogen peroxide to sulfur (n_0_s), and the time of reaction was investigated using Box-Behnken experimental design for oxidation of the model fuel. A significant quadratic model was introduced for the sulfur removal as a function of effective parameters by the statistic analysis.
机译:建立了由过氧化氢,甲酸和硫酸组成的有效氧化系统,然后进行了萃取步骤,以去除模拟燃油中的二苯并噻吩。结果表明,在甲酸和硫酸存在下过氧化氢的情况下,这种性能非常好,从而导致了硫化合物的去除。硫酸与甲酸一起用于增加介质的酸度以及催化活性。氧化反应后是液-液萃取阶段,使用乙腈作为极性溶剂,从模型燃料中除去生成的砜。使用Box-Behnken实验设计对模型燃料进行氧化,研究了操作参数的影响,包括甲酸与硫的摩尔比(n_F / n_s),过氧化氢与硫的摩尔比(n_0 / n_s)和反应时间。通过统计分析,引入了一个有效的二次模型作为有效参数的函数进行硫去除。

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