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A Facile Green Synthetic Route for the Preparation of Highly Active γ-Al2O3 from Aluminum Foil Waste

机译:利用铝箔废料制备高活性γ-Al2O3的简便绿色合成路线

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摘要

A novel green preparation route to prepare nano-mesoporous γ-Al2O3 from AlCl3.6H2O derived from aluminum foil waste and designated as ACFL550 is demonstrated, which showed higher surface area, larger pore volume, stronger acidity and higher surface area compared to γ-Al2O3 that is produced from the commercial AlCl3 precursor, AC550. The produced crystalline AlCl3.6H2O and Al(NO3)3.9H2O in the first stage of the preparation method were characterized by single-crystal XRD, giving two crystal structures, a trigonal (R-3c) and monoclinic (P21/c) structure, respectively. EDX analysis showed that ACFL550 had half the chlorine content (Cl%) relative to AC550, which makes ACFL550 a promising catalyst in acid-catalysed reactions. Pure and modified ACFL550 and AC550 were applied in acid-catalysed reactions, the dehydration of methanol to dimethyl ether and the total methane oxidation reactions, respectively. It was found that ACFL550 showed higher catalytic activity than AC550. This work opens doors for the preparation of highly active and well-structured nano-mesoporous alumina catalysts/supports from aluminum foil waste and demonstrates its application in acid-catalysed reactions.
机译:提出了一种新的绿色制备路线,该路线是从铝箔废料制得的名为ACFL550的AlCl3.6H2O制备纳米级γ-Al2O3的新方法,与γ-Al2O3相比,该方法具有更高的表面积,更大的孔体积,更强的酸度和更高的表面积。由商用AlCl3前体AC550生产。在制备方法的第一阶段中,通过单晶XRD对生成的结晶AlCl3.6H2O和Al(NO3)3.9H2O进行了表征,给出了两个晶体结构,即三角形(R-3c)和单斜晶(P21 / c)结构,分别。 EDX分析表明,ACFL550的氯含量(AC%)是AC550的一半,这使ACFL550成为酸催化反应中有希望的催化剂。将纯ACFL550和改性ACFL550和AC550分别用于酸催化反应,甲醇脱水成二甲醚和总甲烷氧化反应。发现ACFL550显示出比AC550更高的催化活性。这项工作为从铝箔废料制备高活性和结构良好的纳米介孔氧化铝催化剂/载体打开了大门,并证明了其在酸催化反应中的应用。

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