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Copper nickel co-impregnation of Moroccan yellow clay as promising catalysts for the catalytic wet peroxide oxidation of caffeine

机译:铜镍的摩洛哥黄色粘土作为咖啡因催化湿过氧化物氧化的承诺催化剂

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摘要

Copper and nickel were incorporated into the prepared yellow clay (YC) using one of the most widely used methods, for the preparation of heterogeneous catalysts, which is the wet impregnation method (IPM) and its application as a heterogeneous catalyst for Caffeine (CAF). Several catalysts Cooper Nickel's Catalysts (Cu–Ni) were applied to the yellow clay with different weight ratio of Cu and Ni, in order to explore the role of both metals during the catalytic oxidation process CWPO. Furthermore, the CuNi-YC catalysts, were characterized by X-ray diffraction (XRD), X-ray fluorescence (XRF), Langmuir's surface area, Brunauer Emmett Teller (BET), scanning electron microscope (SEM) and inductively Coupled Plasma-Atomic Emission Spectrometry (ICP-AES), so as to get a better understanding concerning the catalytic activity's behavior of CuNi-YC catalysts. The optimization of the catalytic activity's effects on the different weight ratios of Cu and Ni, temperature and H2O2 were also examined, using Box-Behnken Response Surface Methodology RSM to enhance the CAF conversion. The analysis of variances (ANOVA) demonstrates that Box-Behnken model was valid and the CAF conversion reached 86.16%, when H2O2 dosage was equal to 0.15 mol.L−1, copper impregnated (10%) and temperature value attained 60 °C. In addition, the regeneration of catalyst's cycles under the optimum conditions, indicated the higher stability up to four cycles without a considerable reduction in its conversion performance.
机译:使用最广泛使用的方法之一掺入制备的黄色粘土(Yc)中,用于制备异质催化剂,其是湿浸渍方法(IPM)及其作为咖啡因(CAF)的异质催化剂的应用。将几种催化剂Cooper镍催化剂(Cu-Ni)施加到具有不同重量比的Cu和Ni的黄色粘土,以探讨金属在催化氧化过程CWPO期间的作用。此外,CUNI-YC催化剂的特征在于X射线衍射(XRD),X射线荧光(XRF),Langmuir表面积,Brunauer Emmett Teller(Bet),扫描电子显微镜(SEM)和电感耦合等离子体原子发射光谱法(ICP-AES),以便更好地了解CUNI-YC催化剂的催化活性的行为。还检查了催化活性对Cu和Ni的不同重量比,温度和H 2 O 2的影响,使用Box-Behnken响应表面方法RSM来增强CAF转换。差异(ANOVA)的分析表明,当H2O2剂量等于0.15mol.L-1时,CAF转化率达到86.16%,铜浸渍(10%)和温度值60℃。此外,催化剂循环的再生在最佳条件下,表明稳定性较高至四个循环,而无需相当大降低的转化性能。

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