首页> 外文期刊>Iranian journal of chemistry & chemical engineering >Application of Response Surface Methodology for Catalytic Hydrogenation of Nitrobenzene to Aniline Using Ruthenium Supported Fullerene Nanocatalyst
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Application of Response Surface Methodology for Catalytic Hydrogenation of Nitrobenzene to Aniline Using Ruthenium Supported Fullerene Nanocatalyst

机译:响应表面法在钌负载富勒烯纳米催化剂催化硝基苯加氢制苯胺中的应用

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In this study fullerene functionalized using oleum (H2SO4 center dot SO3), followed by the hydrolysis of the intermediate cyclosulfated fullerene as well as an oxidizing agent was employed to functionalize the fullerenes. Ruthenium was then added by the impregnation method or deposited on the functionalized fullerene. Subsequent to this step, Response Surface Methodology (RSM) was used to study the cumulative effect of various parameters including, pressure, temperature, time and loading. In order to maximize the hydrogenation of nitrobenzene (NB) to aniline (AN) these latter parameters were optimized. Furthermore, catalytic activity was evaluated over a temperature range of 25-150 degrees C, hydrogen pressure of 1-30 atm, ruthenium content of 1-15%(w/w) and reaction time of 30-180 min in a bench scale reactor. The optimized model predicted that the hydrogenation should be at a maximum level (approximately 100%) with the following conditions; Ru loading of 15%, reaction temperature of 150 degrees C, reaction time of 180 min and hydrogen pressure of 22.33 atm.
机译:在这项研究中,使用发烟硫酸(H2SO4中心点SO3)对富勒烯进行功能化,然后水解中间体环硫酸化的富勒烯以及氧化剂,对富勒烯进行功能化。然后通过浸渍方法添加钌或将钌沉积在官能化​​的富勒烯上。在此步骤之后,使用响应曲面方法(RSM)研究各种参数(包括压力,温度,时间和载荷)的累积影响。为了最大程度地将硝基苯(NB)氢化为苯胺(AN),需要优化这些参数。此外,在台式反应器中,在25-150摄氏度的温度范围,1-30大气压的氢气压力,1-15%(w / w)的钌含量和30-180分钟的反应时间范围内评估了催化活性。 。优化的模型预测在以下条件下氢化应达到最大水平(约100%); Ru负载量为15%,反应温度为150℃,反应时间为180min,氢压为22.33atm。

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