Smith Paul J, Kondrat Simon A, Chater Philip A, Yeo Benjamin R, Shaw Greg M, Lu Li, Bartley Jonathan K, Taylor Stuart H, Spencer Michael S, Kiely Christopher J, Kelly Gordon J, Park Colin W, Hutchings Graham J
Cardiff Catalysis Institute , School of Chemistry , Cardiff University , Main Building, Park Place , Cardiff , CF10 3AT , UK . Email:
Diamond Light Source , Didcot , OX11 0DE , UK.
Chem Sci. 2017 Mar 1;8(3):2436-2447. doi: 10.1039/c6sc04130b. Epub 2017 Jan 3.
Zincian georgeite, an amorphous copper-zinc hydroxycarbonate, has been prepared by co-precipitation using acetate salts and ammonium carbonate. Incorporation of zinc into the georgeite phase and mild ageing conditions inhibits crystallisation into zincian malachite or aurichalcite. This zincian georgeite precursor was used to prepare a Cu/ZnO catalyst, which exhibits a superior performance to a zincian malachite derived catalyst for methanol synthesis and the low temperature water-gas shift (LTS) reaction. Furthermore, the enhanced LTS activity and stability in comparison to that of a commercial Cu/ZnO/AlO catalyst, indicates that the addition of alumina as a stabiliser may not be required for the zincian georgeite derived Cu/ZnO catalyst. The enhanced performance is partly attributed to the exclusion of alkali metals from the synthesis procedure, which are known to act as catalyst poisons. The effect of residual sodium on the microstructural properties of the catalyst precursor was investigated further from preparations using sodium carbonate.
锌羟碳铜石,一种无定形的铜锌羟基碳酸盐,通过使用醋酸盐和碳酸铵共沉淀法制备。锌掺入羟碳铜石相以及温和的老化条件抑制了其结晶成锌孔雀石或翠镍矿。这种锌羟碳铜石前驱体被用于制备一种铜/氧化锌催化剂,对于甲醇合成和低温水煤气变换(LTS)反应,该催化剂表现出优于由锌孔雀石衍生的催化剂的性能。此外,与商业铜/氧化锌/氧化铝催化剂相比,其增强的LTS活性和稳定性表明,对于由锌羟碳铜石衍生的铜/氧化锌催化剂,可能不需要添加氧化铝作为稳定剂。性能的增强部分归因于在合成过程中排除了碱金属,碱金属已知会起到催化剂毒物的作用。使用碳酸钠进行的制备进一步研究了残余钠对催化剂前驱体微观结构性质的影响。