铜氧化锌催化剂。与前体结构和形态有关的活性

D. Waller, D. Stirling, F. Stone, M. S. Spencer
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引用次数: 109

摘要

研究了Cu-Zn羟基碳酸盐作为Cu-ZnO催化剂的前驱体,特别是在分解和还原之前老化前驱体对催化剂活性的影响。在333 K、pH 7.0的混合硝酸溶液(Cu/Zn摩尔比2:1)中沉淀得到的前驱体由锌孔雀石(Cu/Zn≈85:15)和耳辉石组成。前驱体在333 K母液中进行不同时间的陈化。XRD、ir、DTA、电子显微镜、EDAX和XPS表征表明,老化导致了金方石的损失,并产生了更精细的富铜孔雀石相(Cu/Zn = 2:1)。未老化前驱体产生的催化剂对甲醇合成(在50 bar和1 bar条件下研究)和逆向水气转换反应都具有低活性。老化的前驱体对这两种反应都有更高活性的催化剂。老化的增加没有改变甲醇合成的选择性比,而在常压下CO2+ H2反应的选择性比则相反。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Copper–zinc oxide catalysts. Activity in relation to precursor structure and morphology
Cu–Zn hydroxycarbonates have been studied as precursors of Cu–ZnO catalysts, with particular reference to the effect on catalyst activity of ageing the precursor prior to decomposition and reduction. The precursor obtained by precipitation from mixed nitrate solution (Cu/Zn molar ratio 2:1) at 333 K and pH 7.0 consisted of zincian malachite (Cu/Zn ≈ 85:15) and aurichalcite. The precursor was aged in the mother liquor at 333 K for various times. Characterisation by XRD, i.r., DTA, electron microscopy, EDAX and XPS showed that ageing led to loss of the aurichalcite and production of a more finely divided copper-enriched (Cu/Zn = 2:1) malachite phase. The unaged precursor yielded a catalyst of low activity for both methanol synthesis (studied at 50 bar and at 1 bar) and the reverse water-gas shift reaction. The aged precursor gave catalysts of much higher activity for both reactions. Increased ageing did not change the selectivity ratio for methanol synthesis vs. reverse shift in the CO2+ H2 reaction at normal pressure.
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