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首页> 外文期刊>Chemical Engineering Communications >Determining the Best Composition of a Ni-Fe/Al2O3 Catalyst used for the CO2 Hydrogenation Reaction by Applying Response Surface Methodology
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Determining the Best Composition of a Ni-Fe/Al2O3 Catalyst used for the CO2 Hydrogenation Reaction by Applying Response Surface Methodology

机译:应用响应面法确定用于CO2加氢反应的Ni-Fe / Al2O3催化剂的最佳组成

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摘要

Response surface methodology (RSM) with central composite design (CCD) was applied to determine the composition of an alumina-supported nickel-iron (Ni-Fe) catalyst that provided the highest CH4 yield for the CO2 hydrogenation reaction. This involved synthesis of alumina-supported Ni-Fe catalysts of compositions that were specified by CCD. The catalysts were then tested for the CO2 hydrogenation reaction, and a model equation was developed that related the catalyst composition to the CH4 yield. The model equation was validated by analysis of variance, and it was found to adequately represent the experimental data. The model equation predicted that the alumina-supported Ni-Fe catalyst containing 32.8% Ni and 7.7% Fe would provide the highest CH4 yield. A catalyst with this specific composition and the same metal deposition method and two other catalysts of the same composition but different metal deposition metal were also synthesized, characterized, and tested for the CO2 hydrogenation reaction. The three catalysts did show activities similar to those predicted by the model equation. Furthermore, characterization and reaction studies revealed that the three catalysts were similar, suggesting that the metal deposition methods do not have any effect on the catalytic activity.
机译:应用具有中心复合设计(CCD)的响应表面方法(RSM)来确定氧化铝负载的镍铁(Ni-Fe)催化剂的组成,该催化剂为CO2加氢反应提供了最高的CH4收率。这涉及合成由CCD指定的氧化铝负载的Ni-Fe催化剂。然后测试催化剂的CO2加氢反应,并建立了模型方程,将催化剂的组成与CH4的收率联系起来。通过方差分析验证了模型方程,发现该方程足以表示实验数据。该模型方程预测,包含32.8%的Ni和7.7%的Fe的氧化铝负载的Ni-Fe催化剂将提供最高的CH 4产率。还合成,表征和测试了具有这种特定组成和相同金属沉积方法的催化剂,以及具有相同组成但金属沉积金属不同的另外两种催化剂,并进行了CO2加氢反应的测试。三种催化剂确实显示出与模型方程式预测的活性相似的活性。此外,表征和反应研究表明三种催化剂是相似的,这表明金属沉积方法对催化活性没有任何影响。

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