Molecular-Based Simulation of Feedstock Properties for Complex Reaction System

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作者
Ouyang Fusheng
Bao Wenjun
Jiang Hongbo
Weng Huixin Research Center of Petroleum ProcessingEast China University of Science and TechnologyShanghai [200237 ]
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O621.2 [有机化合物性质];
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<正>The kinetics of complex reaction systems were studied on molecular level with the combined method of Monte Carlo simulation and Structural Oriented Lumping by focusing on deep catalytic cracking(DCC) process, the model parameters were optimized by means of routine analytic data of a DCC unit.A model was established to transform the feedstock of the complex reaction systems such as DCC to 1000—10000 pseudo-molecules with the Monte Carlo simulation and every molecule was expressed by 19 attributes.The results of model simulation showed that these pseudo-molecules reflected the characteristics of feedstock very well and their average properties gave a good agreement with the plant data.
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页码:54 / 60
页数:7
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    马法书
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  • [3] 重油催化裂化反应动力学分子模型的研究
    龚剑洪
    陆善祥
    崔建
    [J]. 石油炼制与化工, 2000, (08) : 53 - 57
  • [4] 深度催化裂解(DCC)技术[J] 周佩玲 石油化工 1997, 08
  • [5] 40万t/a催化裂解装置的试运行及标定[J] 祝良富,石啸涛,李继炳 石油炼制与化工 1996, 09
  • [6] 重质原料油生产轻烯烃的Ⅱ型催化裂解工艺和催化剂[J] 谢朝钢,施文元 工业催化 1996, 02
  • [7] Application of a single-event kinetic model in the simulation of an industrial riser reactor for the catalytic cracking of vacuum gas oil[J] N.V. Dewachtere;F. Santaella;G.F. Froment Chemical Engineering Science 1999, 15
  • [8] Future directions in modeling the FCC process: An emphasis on product quality[J] Gary Christensen;Minas R. Apelian;Karlton J. Hickey;Stephen B. Jaffe Chemical Engineering Science 1999, 13
  • [9] Construction of a molecular representation of a complex feedstock by Monte Carlo and quadrature methods
    Campbell, DM
    Klein, MT
    [J]. APPLIED CATALYSIS A-GENERAL, 1997, 160 (01) : 41 - 54