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Synthesis of gasoline fractions from CO and H-2 through oxygenates

机译:通过含氧化合物由CO和H-2合成汽油馏分

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The technology for the manufacturing of gasoline fractions (synthetic hydrocarbons) from synthesis gas (syngas) on zeolites through the oxygenate production step as developed at the Topchiev Institute of Petrochemical Synthesis, differs from the classical MTG process of ExxonMobil in that the oxygenate and gasoline production steps are integrated in one circuit. In the new technology, the synthetic hydrocarbons contain 6 to 27 wt % aromatic hydrocarbons (benzene and durene a parts per thousand currency sign2 wt %) depending on the H-2/CO ratio in syngas. When syngas with H-2/CO a parts per thousand currency sign 3.5 in the vapor-gas mixture arriving at the gasoline production stage is used, an increased methanol (MeOH) content is observed and the MeOH conversion is incomplete with the exhaustive conversion of dimethyl ether (DME). To increase the involvement of MeOH in the synthesis of the gasoline fraction, the influence of various parameters on the conversion of MeOH and DME has been studied. It has been shown that a change in the composition of fresh syngas has a more significant effect notably on the MeOH, rather than the DME conversion into synthetic hydrocarbons and is enhanced with an increase in the MeOH weight hourly space velocity (WHSV). If the vapor-gas mixture arriving from the oxygenate production reactor at the step of production of the gasoline fraction contains more than 50 wt % MeOH, in order to improve the selectivity for the gasoline fraction, the synthesis should be conducted at a lower WHSV of oxygenates than in the case when the vapor-gas mixture contains DME alone.
机译:托普奇耶夫石油化学合成研究所开发的通过含氧化合物生产步骤由沸石上的合成气(合成气)生产汽油馏分(合成烃)的技术与埃克森美孚的传统MTG工艺不同,在于含氧化合物和汽油的生产步骤集成在一个电路中。在新技术中,取决于合成气中的H-2 / CO比例,合成烃包含6至27 wt%的芳族烃(苯和丁二烯的千分之一货币单位2 wt%)。当使用具有H-2 / CO的合成气,到达汽油生产阶段的蒸气-气体混合物中的千分之3.5的比例时,观察到甲醇(MeOH)含量增加,并且随着HCl的彻底转化,MeOH转化不完全。二甲醚(DME)。为了增加MeOH在汽油馏分合成中的参与,已研究了各种参数对MeOH和DME转化率的影响。已经表明,新鲜合成气组成的变化对甲醇具有显着的影响,而不是将DME转化为合成烃,并且随着MeOH重量时空速(WHSV)的增加而增强。如果在汽油馏分的生产步骤中从含氧化合物生产反应器到达的蒸气-气体混合物包含超过50 wt%的MeOH,则为了提高汽油馏分的选择性,应在较低的WHSV下进行合成与蒸气-气体混合物仅包含DME的情况相比,含氧量更高。

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