Oubraham Anisoara, Iordache Mihaela, Marin Elena, Sisu Claudia, Borta Simona, Soare Amalia, Capris Catalin, Marinoiu Adriana
National Institute for Cryogenics and Isotopic Technologies-ICSI Ramnicu Valcea, Uzinei Str. No. 4, 240050 Ramnicu Valcea, Romania.
Materials (Basel). 2024 Feb 9;17(4):847. doi: 10.3390/ma17040847.
This paper presents the preparation of heterogeneous catalysts for the direct hydrogenation process of CO to methanol. The development of the modern chemical industry is inextricably linked to the use of catalytic processes. As a result, currently over 80% of new technologies introduced in the chemical industry incorporate catalytic processes. Since the basic factor of catalytic processes is the catalysts, the studies for the deepening of the knowledge regarding the nature of the action of the catalysts, for the development of new catalysts and catalytic systems, as well as for their improvement, represent a research priority of a fundamental or applied nature. The Cu/ZnO/AlO catalyst for the synthesis of green methanol, using precursors of an inorganic (copper nitrate, denoted by Cu/ZnO/AlO-1) and organic (copper acetate, denoted by Cu/ZnO/AlO-2) nature, are obtained by chemical impregnation that includes two stages: preparation and one of calcination. The preparation methods and conditions, as well as the physico-chemical properties of the catalyst precursor, play a major role in the behavior of the catalysts. The prepared catalysts were characterized using atomic adsorption analysis, scanning electron microscopy (SEM) with energy dispersive X-ray (EDX) analysis, specific surface area and pore size analyses, adsorption, and the chemisorption of vapor (BET).
本文介绍了用于CO直接加氢制甲醇的多相催化剂的制备。现代化学工业的发展与催化过程的应用有着千丝万缕的联系。因此,目前化学工业中引入的新技术中超过80%都包含催化过程。由于催化过程的基本要素是催化剂,深入了解催化剂作用本质、开发新型催化剂和催化体系以及对其进行改进的研究,是具有基础或应用性质的研究重点。使用无机(硝酸铜,记为Cu/ZnO/AlO - 1)和有机(醋酸铜,记为Cu/ZnO/AlO - 2)性质的前驱体制备用于合成绿色甲醇的Cu/ZnO/AlO催化剂,是通过包括两个阶段(制备和煅烧之一)的化学浸渍法获得的。制备方法和条件以及催化剂前驱体的物理化学性质,对催化剂的性能起着主要作用。使用原子吸收分析、带有能量色散X射线(EDX)分析的扫描电子显微镜(SEM)、比表面积和孔径分析、吸附以及蒸汽化学吸附(BET)对制备的催化剂进行了表征。