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A hybrid numerical approach for multi-responses optimization of process parameters and catalyst compositions in CO2 OCM process over CaO-MnO/CeO2 catalyst

机译:CaO-MnO / CeO2催化剂用于CO2 OCM工艺中工艺参数和催化剂组成多响应优化的混合数值方法

摘要

A new hybrid numerical approach, using Weighted Sum of Squared Objective Functions (WSSOF) algorithm, was developed for multi-responses optimization of carbon dioxide oxidative coupling of methane (CO2 OCM). The optimization was aimed to obtain optimal process parameters and catalyst compositions with high catalytic performances. The hybrid numerical approach combined the single-response modeling and optimization using Response Surface Methodology (RSM) and WSSOF technique of multi-responses optimization. The hybrid algorithm resulted in Pareto-optimal solutions and an additional criterion was proposed over the solutions to obtain a final unique optimal solution. The simultaneous maximum responses of C2 selectivity and yield were obtained at the corresponding optimal independent variables. The results of the multi-response optimization could be used to facilitate in recommending the suitable operating conditions and catalyst compositions for the CO2 OCM process.
机译:开发了一种新的混合数值方法,该方法使用目标函数平方和(WSSOF)算法对甲烷的二氧化碳氧化偶联(CO2 OCM)进行多响应优化。该优化旨在获得具有高催化性能的最佳工艺参数和催化剂组成。混合数值方法结合了单响应建模和使用响应曲面方法(RSM)和WSSOF技术进行多响应优化的优化。混合算法产生了帕累托最优解,并在该解上提出了附加准则,以获得最终唯一的最优解。在相应的最佳独立变量下获得了C2选择性和产率的同时最大响应。多响应优化的结果可用于促进推荐适合CO2 OCM工艺的操作条件和催化剂组成。

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