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Dynamic modeling and process optimization of an industrial sulfuric acid plant

机译:工业硫酸装置的动态建模和工艺优化

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The current legislation imposes tighter restrictions in order to reduce the impact of chemical process industry on the environment. In this context, this study presents the dynamic model, simulation and optimization results for an industrial sulfuric acid plant. The dynamic model, implemented in PSEgPROMS includes a catalytic reactor (five pass converter), heat exchangers such as economizers and feed-effluent heat exchangers, mixers, splitters and reactive absorption columns. The kinetic parameters were fitted to the real plant data, while the remaining model parameters were estimated using classical correlations. The modeling results agree very well with the real plant data. The model implemented ingPROMS is useful for evaluating the dynamic behavior of the plant and for minimization of the total amount of SOx emissions. The SOx emissions could be significantly reduced by over 40% by optimizing operating parameters such as air feed flow rates or split fractions. However, only minor increases in energy production can be achieved due to the plant already operating near full capacity. The simulations also show that operational problems may occur when the process is disturbed due to production rate changes or catalyst deactivation, the non-linear response of the plant leading to sustained oscillations. Besides controllability, operability and optimization studies the gPROMS plant model is also useful for operator training and various scenario assessments.
机译:当前的立法施加了更严格的限制,以减少化学加工工业对环境的影响。在此背景下,本研究介绍了工业硫酸装置的动力学模型,仿真和优化结果。在PSEgPROMS中实现的动态模型包括催化反应器(五遍转化器),热交换器(例如节热器和进料热交换器),混合器,分离器和反应吸收塔。将动力学参数拟合到实际植物数据,同时使用经典相关性估算剩余的模型参数。建模结果与实际工厂数据非常吻合。实施ingPROMS的模型可用于评估工厂的动态行为,并最大程度减少SOx排放总量。通过优化操作参数(例如空气进料流速或分馏分数),可以显着减少SOx排放40%以上。但是,由于该工厂已经接近满负荷运转,因此只能实现少量的能源生产增长。模拟还表明,当过程因生产率变化或催化剂失活而受到干扰时,可能会发生操作问题,而工厂的非线性响应会导致持续振荡。除了可控制性,可操作性和优化研究之外,gPROMS工厂模型还对操作员培训和各种情景评估有用。

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