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Advanced modelling in performance optimization for reactive separation in industrial CO2 removal

机译:性能优化中的高级建模,用于工业二氧化碳去除中的反应分离

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A comprehensive model has been developed for investigating the absorption of carbon dioxide in hot potassium carbonate solution with boric acid catalyst. The model consists of the kinetics of key reactions and considers the interactions between mass-transfer and chemical kinetics. The mass-transfer coefficient was calculated using the surface renewal theory and the chemical reaction in the liquid phase is based on the bicarbonate ion formation from CO2 as the rate-determining step. The mathematical models comprising coupled sets of non-linear differential and algebraic equations were solved using our software package for the absorber. The model was validated using plant data and was used to compute the flow, temperature and concentration profiles in the absorber for sensitivity analysis. The variation in exit CO2 concentration with respect to the operating conditions was also examined.
机译:已经开发出用于研究在热碳酸钾溶液中用硼酸催化剂吸收二氧化碳的综合模型。该模型由关键反应的动力学组成,并考虑了传质与化学动力学之间的相互作用。传质系数是使用表面更新理论计算得出的,液相中的化学反应是基于二氧化碳的碳酸氢根离子形成的速率确定步骤。使用我们的吸收器软件包,求解了包括非线性微分方程和代数方程的耦合集合的数学模型。该模型已使用工厂数据进行了验证,并用于计算吸收器中的流量,温度和浓度曲线,以进行灵敏度分析。还检查了出口CO2浓度相对于操作条件的变化。

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