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Study on reformulation of fluid catalytic cracking gasoline and increasing production of light olefins
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The resulting refined oil can be used as high-quality raw material in hydrocracking and catalytic cracking.
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Catalytic cracking is considered, and the existence of one, two, or three steady-state solutions is demonstrated, which, depending on process parameters, define eight types of topological structure.
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The paper introduces the influence of the aging temperature of catalysts and different ratios of LBO-16 and LBO-A on the aromatization reaction of Lanlian fluid catalytic cracking (FCC) gasoline.
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The results could be used as a reference for the oxidative desulfurization of gasoline because thiophene is one of the main components containing sulfur in a fluid catalytic cracking (FCC) gasoline.
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Nanocrystalline nickel with an average diameter of about 16 nm and a face-centered cubic (fcc) structure was uniformly attached to the surface of carbon nanotubes (CNT) by wet chemistry.
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Constitutive Model for an FCC Single-Crystal Material
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Thinking of the yield function as a plastic potential function from the associated flow rule, the elastic-plastic constitutive model for the FCC single-crystal material is constructed, and the corresponding elastic-plastic matrix is educed.
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The experimental results showed that FCC gasoline was obviously reformulated under appropriate reaction conditions.
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The olefins (olefins with C atom number above 4) content of FCC gasoline was markedly reduced, and the aromatics content and octane number were increased.
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Study on reformulation of fluid catalytic cracking gasoline and increasing production of light olefins
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The paper introduces the influence of the aging temperature of catalysts and different ratios of LBO-16 and LBO-A on the aromatization reaction of Lanlian fluid catalytic cracking (FCC) gasoline.
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The results could be used as a reference for the oxidative desulfurization of gasoline because thiophene is one of the main components containing sulfur in a fluid catalytic cracking (FCC) gasoline.
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The alkene-rich petrol fraction from refinery fluid catalytic cracking (FCC) has been characterized by GC and GC-MS.
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Catalyst particles used for fluid catalytic cracking (FCC) in oil refineries can undergo attrition, which can contribute to the production of fines.
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Particle shape characterization of fluidized catalytic cracking catalyst powders using the mean value and distribution of shape
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short/long ratio (SM), roundness (R) and concavity (CA), are able to describe the particle shape of fluidized catalytic cracking (FCC) catalysts in three principal aspects.
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Nearly all other petroleum refineries include a fluidized catalytic cracking unit, and this unit is generally the largest-emitting unit at a refinery.
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