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首页> 外文期刊>AIChE Journal >A Practical Countercurrent Fluid Catalytic Cracking Regenerator Model for In Situ Operation Optimization
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A Practical Countercurrent Fluid Catalytic Cracking Regenerator Model for In Situ Operation Optimization

机译:实用的逆流流体催化裂化蓄热器原位运行优化模型

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摘要

A practical countercurrent fluid catalytic cracking (FCC) regenerator model with improved descriptions of gas and solid flow patterns is proposed. A three-zone and two-phase gas model was utilized to describe the gas flow through the regenerator, addressing the different phase mass-transfer properties in the different zones. A new two-continuously stirred-tank reactor-with-interchange model was used to describe the solid flow and to address the effect of freeboard on catalyst regeneration. Otherwise, this model also considered the usually adopted expanding section for reducing solid carryover. The model was programmed in Matlab language with coupled hydrodynamics and reaction kinetics models and tested and validated by the data from an industrial FCC regenerator operated under both partial and full CO combustion modes. After fitting a single model parameter, the interchange solid flux between the dense bed and freeboard, the model predictions were in reasonable agreement with the commercial data for both modes.
机译:提出了一种实用的逆流流体催化裂化(FCC)再生器模型,该模型具有对气体和固体流型的改进描述。利用三区两相气体模型来描述流经蓄热室的气流,以解决不同区域中不同相的传质特性。一种新的具有交换的两连续搅拌罐式反应器互换模型用于描述固体流量并解决干馏对催化剂再生的影响。否则,该模型还考虑了通常采用的扩展部分以减少固体残留。该模型使用Matlab语言编程,并结合了流体动力学和反应动力学模型,并通过在部分和完全CO燃烧模式下运行的工业FCC再生器的数据进行了测试和验证。在拟合单个模型参数(密实床和干舷之间的交换固体通量)后,模型预测与两种模式的商业数据都合理一致。

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