卡拉恰甘纳克气田凝析油直馏汽油馏分氧化脱硫研究

D. Muktaly, Z. Myltykbayeva, A. Akopyan, M. Smaiyl, N. Muftеyeva
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摘要

汽车燃料消耗量的逐年增长促使我们寻找新的获取途径。同样重要的是,在石油生产过程中获得的发动机燃料(伴生气,凝析气)的环境和运行质量要求系统地变得更加严格。解决上述问题的途径之一是利用氧化脱硫工艺来提高石油产品的质量。在这种情况下,对从Karachaganak气田凝析油中获得的直馏汽油馏分进行了氧化脱硫。在过渡金属、钼和钒盐的存在下,用过氧化氢进行了氧化过程。选择了汽油直馏馏分氧化工艺的最佳工艺参数(温度:600℃,时间:2 h, H2O2:S=4:1 (mol), Me:S=1:100 (mol))。在最佳氧化工艺条件下,总硫含量降低了89.9%。研究表明,与钒化合物相比,钼化合物在600℃的温度下对含硫化合物的氧化表现出更大的活性。介绍了用氧化脱硫法提纯含硫汽油馏分,再用最有效的N,N-二甲基甲酰胺萃取脱硫的原理图。
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Oxidative desulfurization of the straight-run gasoline fraction from the gas condensate of the Karachaganak field
An annual increase in the consumption of the automobile fuels makes us look for new ways of their obtaining. It is also important that the environmental and operational requirements for the quality of the motor fuels, obtained during oil production (associated petroleum gas, gas condensate) are systematically made more rigorous. One of the ways to solve the problems described above is to use the process of oxidative desulfurization to improve the quality of the petroleum products. In this case, oxidative desulfurization of the straight-run gasoline fraction, obtained from the gas condensate of the Karachaganak field, has been carried out. The oxidation process has been carried out with hydrogen peroxide in the presence of salts of the transition metals, molybdenum and vanadium. The optimal technological parameters (Patm, T=600C, 2 h, H2O2:S=4:1 (mol), Me:S=1:100 (mol)) of the oxidation process for the straight-run gasoline fractions have been selected. Under the optimal conditions of the oxidation process, the total sulfur content has been reduced by 89.9%. It has been shown that the molybdenum compounds exhibit greater activity in the oxidation of sulfur-containing compounds at a temperature of 600C, as compared to the vanadium compounds. A schematic diagram of the purification of the gasoline fractions from the sulfur-containing compounds by oxidative desulfurization, followed by its extraction desulfurization with the most effective N,N-dimethylformamide has been presented.
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