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Fluid Catalytic Cracking Selectivities of Gas Oil Boiling Point and Hydrocarbon Fractions

机译:瓦斯油沸点和烃馏分的流化催化裂化选择性

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The product selectivities of the fluid catalytic cracking (FCC) process are strongly dependent on the properties of the petroleum gas oil reactant. In order to elucidate the complex relationship between gas oil chemical composition and product selectivity, a new technique has been developed which experimentally determines the product distribution of specific gas oil fractions in a realistic chemical environment. This "incremental yield analysis" approach is examined with a representative industrial gas oil. The gas oil is characterized and then divided into boiling point fractions by distillation and into hydrocarbon-type fractions with a chromatographic method. The FCC selectivity of each gas oil fraction is then determined by microactivity testing of blends of each fraction with the original gas oil. Results show that hydrocarbon type is a more significant determinant of the product spectrum than boiling point.
机译:流化催化裂化(FCC)过程的产物选择性在很大程度上取决于石油气反应物的性质。为了阐明瓦斯油化学成分与产物选择性之间的复杂关系,已开发出一种新技术,该技术可以通过实验确定实际化学环境中特定瓦斯油馏分的产物分布。使用代表性的工业粗柴油检查这种“增量产量分析”方法。对粗柴油进行表征,然后通过蒸馏将其分为沸点馏分,并通过色谱法将其分为烃类馏分。然后,通过对每个馏分与原始瓦斯油的混合物进行微活度测试来确定每个瓦斯油馏分的FCC选择性。结果表明,烃类型比沸点对产物谱的影响更大。

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