Composition of products of cracking of oxidized sulfur-containing vacuum gasoil components

Yulia A. Yovik, E. B. Krivtsov, A. Golovko
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Abstract

The degradation of feedstock entering the refinery, leads to the need to increase the depth of oil refining. One of the promising methods for the processing of heavy hydrocarbon feedstocks is the combination of oxidation and subsequent cracking, which makes it possible to effectively remove polyaromatic sulfur compounds and to obtain additional quantities of distillate fractions. To develop effective methods of cracking of the products of oxidation of sulfur compounds, it is necessary to establish their thermal stability and the dependence of changes in the composition and properties of products on the conditions of oxidation and subsequent cracking. Vacuum gas oil was oxidized with a mixture of hydrogen peroxide with formic acid. The oxidized gas oil was cracked or divided into polar and non-polar components, with subsequent cracking. The composition of sulfur compounds of the cracking products was analyzed by chromatographic methods. Selective cracking of polar and non-polar components allows reducing gas formation and increasing the yield in distillate fractions. Depending on the conditions, reactions of cracking of oxidized sulfur compounds can proceed with the formation of a wide range of thiophene derivatives. Further investigations will allow gaining a better understanding of the patterns of transformations of sulfur-containing compounds of vacuum distillates in oxidative and thermal processes.The degradation of feedstock entering the refinery, leads to the need to increase the depth of oil refining. One of the promising methods for the processing of heavy hydrocarbon feedstocks is the combination of oxidation and subsequent cracking, which makes it possible to effectively remove polyaromatic sulfur compounds and to obtain additional quantities of distillate fractions. To develop effective methods of cracking of the products of oxidation of sulfur compounds, it is necessary to establish their thermal stability and the dependence of changes in the composition and properties of products on the conditions of oxidation and subsequent cracking. Vacuum gas oil was oxidized with a mixture of hydrogen peroxide with formic acid. The oxidized gas oil was cracked or divided into polar and non-polar components, with subsequent cracking. The composition of sulfur compounds of the cracking products was analyzed by chromatographic methods. Selective cracking of polar and non-polar components allows reducing g...
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氧化含硫真空汽油组分裂解产物的组成
进入炼油厂的原料的降解,导致需要增加炼油深度。处理重烃原料的一种很有前途的方法是氧化和随后的裂解相结合,这使得有效地去除多芳硫化合物并获得额外数量的馏分成为可能。为了开发有效的含硫化合物氧化产物的裂解方法,有必要确定其热稳定性以及产物的组成和性能变化与氧化和随后的裂解条件的依赖关系。用过氧化氢和甲酸的混合物氧化真空瓦斯油。氧化气油裂解或分成极性组分和非极性组分,随后裂解。用色谱法分析了裂解产物中硫化物的组成。极性和非极性组分的选择性裂解可以减少气体的形成,提高馏分的收率。根据不同的条件,氧化硫化合物的裂解反应可以产生多种噻吩衍生物。进一步的研究将使我们能够更好地了解真空馏出物中含硫化合物在氧化和热过程中的转化模式。进入炼油厂的原料的降解,导致需要增加炼油深度。处理重烃原料的一种很有前途的方法是氧化和随后的裂解相结合,这使得有效地去除多芳硫化合物并获得额外数量的馏分成为可能。为了开发有效的含硫化合物氧化产物的裂解方法,有必要确定其热稳定性以及产物的组成和性能变化与氧化和随后的裂解条件的依赖关系。用过氧化氢和甲酸的混合物氧化真空瓦斯油。氧化气油裂解或分成极性组分和非极性组分,随后裂解。用色谱法分析了裂解产物中硫化物的组成。极性和非极性组分的选择性开裂允许降低g…
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