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Modeling of the Fischer-Tropsch process using a Fe-Cu-K catalyst

机译:使用Fe-Cu-K催化剂的Fischer-Tropsch过程建模

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In a bid to increase Fischer-Tropsch product selectivity, inorganics substances, such as copper, potassium, and others, were added to the catalyst. Although this approach in Fischer-Tropsch synthesis is very important, it has not been discussed widely. Isothermal product models in this type of synthesis and effective parameters are the same as pressure, while the H-2/CO feed ratio and space velocity have been studied over the spray-dried Fe-Cu-K catalyst by using statistical methods with experimental data. P = 1.0-2.5MPa, H-2/CO feed ratio = 0.6-2.0, and space velocity = 0.07-0.1 1/h are the range of operating conditions in the spinning basket reactor. The experiment was carried out at a constant temperature of 523K. The models can predict the reaction's product. Through these the optimal conditions in the reactor models can be determined, while the maximum and minimum amounts of products for oil, wax, and water are obtained under the optimized conditions. The models showed that the interaction between parameters played a key role. The main interactions for products are pressure and space velocity.
机译:在增加Fischer-Tropsch产品的选择性中,加入到催化剂中的无机物质,例如铜,钾等。虽然这种方法在Fischer-Tropsch合成非常重要,但它尚未广泛讨论。在这种类型的合成和有效参数中的等温产品模型与压力相同,而通过使用实验数据的统计方法,通过使用统计方法在喷雾干燥的Fe-Cu-K催化剂上进行了H-2 / CO进料比和空间速度。 p = 1.0-2.5MPa,H-2 / CO进料比= 0.6-2.0,空间速度= 0.07-0.1 1 / h是纺纱篮反应器中的操作条件范围。实验在523K的恒定温度下进行。该模型可以预测反应的产品。通过这些反应器模型中的最佳条件可以确定,而在优化条件下获得最大和最小的油,蜡和水量的产品。该模型显示参数之间的交互播放了关键作用。产品的主要相互作用是压力和空间速度。

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