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New generic approach for the modeling of fluid catalytic cracking (FCC) riser reactor

机译:用于流化催化裂化(FCC)提升管反应器建模的新通用方法

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A new kinetic model for the fluid catalytic cracking (FCC) riser is developed. An elementary reaction scheme, for the FCC, based on cracking of a large number of lumps in the form of narrow boiling pseudocomponents is proposed. The kinetic parameters are estimated using a semi-empirical approach based on normal probability distribution. The correlation proposed for the kinetic parameters' estimation contains four parameters that depend on the feed characteristics, catalyst activity, and coke forming tendency of the feed. This approach eliminates the need of determining a large number of rate constants required for conventional lumped models. The model seems to be more versatile than existing models and opens up a new dimension for making generic models suitable for the analysis and control studies of FCC units. The model also incorporates catalyst deactivation and two-phase flow in the riser reactor. Predictions of the model compare well with the yield pattern of industrial scale plant data reported in literature. (C) 2007 Elsevier Ltd. All rights reserved.
机译:建立了流化催化裂化立管的新动力学模型。针对FCC,提出了一种基于窄沸点假组分形式的大量团块裂化的基本反应方案。使用基于正态概率分布的半经验方法估计动力学参数。建议用于动力学参数估计的相关性包含四个参数,这些参数取决于进料特性,催化剂活性和进料的结焦趋势。这种方法无需确定常规集总模型所需的大量速率常数。该模型似乎比现有模型更具通用性,并且为使通用模型适合FCC单元的分析和控制研究开辟了一个新的维度。该模型还将提升管反应器中的催化剂失活和两相流动纳入考虑。该模型的预测与文献中报道的工业规模工厂数据的产量模式具有很好的对比。 (C)2007 Elsevier Ltd.保留所有权利。

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