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首页> 外文期刊>The Open Process Chemistry Journal >Methane Activation Process: Simultaneous Optimization of Methane Conversion and Aromatic Yields using Zn-ZSM-11 Zeolite
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Methane Activation Process: Simultaneous Optimization of Methane Conversion and Aromatic Yields using Zn-ZSM-11 Zeolite

机译:甲烷活化过程:使用Zn-ZSM-11沸石同时优化甲烷转化率和芳烃收率

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摘要

Experiment Design – Response Surface Methodology (RSM) is used to model and to optimize the activation of Methane (C1) using Ethane (C2) as co-reactant into higher hydrocarbons, over Zn-containing zeolite catalyst. The application of this methodology in this work, allows a better understanding of the influence of the different factors; on two responses simultaneously: C1 Conversion and Aromatic Hydrocarbons Yields. Box-Behnken Design was development and the Responses Surfaces were defined, finding the best combination in the reaction parameters in order to optimize the process. Applying the statistic methodology, the best operation conditions obtained are: high C1 conversion (48.6 mol% C) and Aromatic Hydrocarbons Yields (47.2 mol%) were achieved working at these conditions, advancing to the results recently reported by us, where only one objective function (C1 conversion) was optimized.
机译:实验设计–响应面方法学(RSM)用于建模和优化甲烷(C1)的活化,其中乙烷(C2)作为共反应剂在含锌沸石催化剂上转化为高级烃。这种方法在这项工作中的应用,可以更好地理解不同因素的影响。同时获得两个响应:C1转化率和芳烃产率。开发了Box-Behnken设计并定义了响应面,从而在反应参数中找到最佳组合以优化工艺。应用统计方法,可获得的最佳操作条件为:在这些条件下工作可获得较高的C1转化率(48.6 mol%C)和芳烃产率(47.2 mol%),这要优于我们最近报告的结果,其中只有一个目标功能(C1转换)已优化。

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