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Mechanochemical Synthesis of CuO/MgAl2O4 and MgFe2O4 Spinels for Vanillin Production from Isoeugenol and Vanillyl Alcohol

机译:异丁香酚和香草醛醇制备香兰素的CuO / MgAl2O4和MgFe2O4尖晶石的机械化学合成

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摘要

CuO/MgAl2O4 and CuO/MgFe2O4 catalysts were successfully synthesized with the use of spinel supports by a very simple and low-cost mechanochemical method. High-speed ball-milling was used to synthesize these catalyst supports for the first time. Materials were subsequently characterized by using XRD, FESEM, TEM, EDS-Dot mapping, XPS, BET-BJH, and Magnetic Susceptibility to investigate the physical-chemical characteristics of the catalysts. Acidity evaluation results indicated that the catalyst with the Mg-Al spinel support had more acid sites. XRD results showed a successful synthesis of the catalysts with large crystal sizes. Both catalysts were used in isoeugenol oxidation and vanillyl alcohol to vanillin reactions, with the CuO/MgAl2O4 showing optimum results. This catalyst provided 67% conversion (74% selectivity) after 2 h and this value improved to 81% (selectivity 100%) with the second reaction after 8 h. The CuO/MgFe2O4 catalyst in the first reaction after five hours revealed 53% conversion (47% selectivity) and after eight hours with the second reaction, the conversion value improved to 64% (100% selectivity). In terms of reusability, CuO/MgAl2O4 showed better results than the CuO/MgFe2O4 catalyst, for both reactions.
机译:使用尖晶石载体,通过非常简单且低成本的机械化学方法成功合成了CuO / MgAl2O4和CuO / MgFe2O4催化剂。高速球磨首次用于合成这些催化剂载体。随后通过使用XRD,FESEM,TEM,EDS-Dot映射,XPS,BET-BJH和磁化率对材料进行表征,以研究催化剂的物理化学特性。酸度评估结果表明,带有Mg-Al尖晶石载体的催化剂具有更多的酸位。 XRD结果表明成功合成了具有大晶体尺寸的催化剂。两种催化剂都用于异丁香酚氧化和香草醇到香草醛的反应,其中CuO / MgAl2O4表现出最佳效果。该催化剂在2小时后提供67%的转化率(74%的选择性),在8小时后的第二次反应中,该值提高到81%(选择性100%)。五小时后的第一反应中的CuO / MgFe2O4催化剂显示出53%的转化率(47%的选择性),而第二反应的八小时后,转化率提高到64%(100%的选择性)。在可重复使用性方面,在两个反应中,CuO / MgAl2O4的结果均优于CuO / MgFe2O4催化剂。

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