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Waste-Slag Hydrocalumite and Derivatives as Heterogeneous Base Catalysts

机译:废渣氢化氢盐和衍生物作为异质碱催化剂

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摘要

Blast furnace slag (BFS), a high-volume byproduct resulting from iron-making processes, can be considered as a low-cost and abundant precursor for preparing layered double hydroxide (LDH) compounds. Here we demonstrate that a Ca-based LDH compound (hydrocalumite) synthesized from waste BFS through facile two-step procedures and its derivatives work as useful heterogeneous base catalysts for multiple chemical reactions including the Knoevenagel condensation, oxidation of alkylaromatics with O2, transesterification, and cycloaddition reaction of epoxides with atmospheric CO2. Structures were verified by using XRD and thermogravimetric analysis. The surface basicity and coordination geometry of the active metal species that substantially affect the catalytic activity were investigated by CO2-temperature programmed desorption (TPD) and X-ray absorption fine structure (XAFS) measurements, respectively. These characterization results revealed that the slag-derived impurity elements, such as Fe, Ti, and Mn, effectively act either as active sites or as catalyst promoters in particular reactions and that the kind of guest counter anion (Cl- or NO3-) also plays a key role for achieving high catalytic efficiencies. In any reaction, the catalyst was easily separated by filtration and recyclable in multiple catalytic runs with retention of its activity and fine selectivity, irrespective of its considerable impurity level. It is believed that the slag-made hydrocalumite can replace existing LDH catalysts as a low-cost alternative and potentially contribute to sustainable chemical processes.
机译:高炉炉渣(BFS),由铁制备方法产生的高批量副产物,可被认为是制备层状双氢氧化物(LDH)化合物的低成本和丰富的前体。在这里,我们证明了通过容易的两步程序和其衍生物由废BFS合成的基于Ca的LDH化合物(含氢)作为有用的异质基础催化剂,用于多种化学反应,包括Knoevenagegel缩合,烷基芳烃与O 2,酯交换和溶解剂环氧化物与大气二氧化碳的环加成反应。通过使用XRD和热重分析来验证结构。通过CO 2温度编程解吸(TPD)和X射线吸收细结构(XAFS)测量,研究了基本上影响催化活性的活性金属物种的表面碱度和配位几何形状。这些表征结果表明,炉渣衍生的杂质元素,例如Fe,Ti和Mn,有效地作为活性位点或作为催化剂启动子特别反应,并且这类客舱控制(Cl-或No3-)也是如此为实现高催化效率发挥关键作用。在任何反应中,通过过滤容易地分离催化剂,并且在多种催化过程中可回收,其活性和精细选择性无论其相当大的杂质水平如何。据信,矿渣制备的含氢可以将现有的LDH催化剂替代为低成本的替代品,并且可能导致可持续的化学过程。

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