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Modelling catalyst regeneration in an industrial FCC unit

机译:模拟工业FCC装置中的催化剂再生

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Predictive models for process parameters during regeneration of spent catalyst in an industrial fluid catalytic cracking (FCC) unit are presented. The models adopt a two-phase theory where the dense region of the regenerator is divided into a bubble-phase and an emulsion-phase. The bubble-phase is modelled as a plug flow reactor, while the emulsion-phase is modelled as a continuous stirred tank reactor (CSTR). Profiles for regenerator-temperature, quantity of coke burnt, and flue gas composition, at different operating conditions are also presented. Model-predictions are compared with plant data and good agreement is obtained. Simulation results indicate that inlet-air velocity and catalyst-bed height have significant influence on the performance of the regenerator. The model-estimated optimum operating conditions of the regenerator are regenerator-temperature of about 1000 K, inlet-air velocity of about 13.5 m/s, and catalyst-bed height of 13 m.
机译:提出了在工业流化催化裂化(FCC)装置中废催化剂再生过程中工艺参数的预测模型。这些模型采用两相理论,其中蓄热室的密集区域分为气泡相和乳液相。气泡相被建模为活塞流反应器,而乳液相被建模为连续搅拌釜反应器(CSTR)。还提供了在不同操作条件下的蓄热器温度,焦炭燃烧量和烟气成分的曲线。将模型预测与工厂数据进行比较,并获得良好的一致性。仿真结果表明,进气速度和催化剂床层高度对再生器的性能有重要影响。模型估算的蓄热室最佳运行条件是蓄热室温度约为1000 K,进气速度约为13.5 m / s,催化剂床层高度为13 m。

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