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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Use of tetraethylammonium bicarbonate as a precipitation agent on the preparation of coprecipitated Cu/ZnO catalysts
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Use of tetraethylammonium bicarbonate as a precipitation agent on the preparation of coprecipitated Cu/ZnO catalysts

机译:在共沉淀的Cu / ZnO催化剂的制备上使用四乙基碳酸氢铵作为沉淀剂

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c Cu/ZnO catalysts were prepared by coprecipitation using tetraethylammonium bicarbonate (TEA(+)HCO(3)(-)), and their properties and methanol synthesis activities were compared to those of the catalysts prepared using Na+HCO3- usually employed for commercial Cu/ZnO/(Al2O3) catalysts. When washed fully, TEA(+)- and Na+-based precursors showed typical zincian malachite (zM) without any other structures, and both catalysts obtained after calcination and H-2 reduction exhibited the similar specific copper surface area and, in turn, the similar methanol productivity. Since this result explains that TEA(+) does not affect zM structure if Cu,Zn precipitate is fully washed, no washed and less washed TEA(+)- and Na+-based precursors were prepared. It was interesting that all TEA(+)-based catalysts exhibited the similar methanol productivity irrespective of the washing efficiency whereas Na+-based catalyst containing more residual Na+ showed the smaller copper surface area and lower methanol productivity (i.e., linear correlation between the two parameters). This resulted from the inhibiting effect of Na+ on the degree of Cu2+ substitution by Zn2+ and the formation of high-temperature carbonate, consequently leading to a lower catalytic activity. These negative effects of Na+ were absent or lessened when TEA(+)HCO(3)(-) was used as a precipitation agent, which is effective in preparing an active methanol synthesis catalyst.
机译:通过使用四乙基碳酸氢铵(TEA(+)HCO(3)(3)))通过共沉淀制备C Cu / ZnO催化剂,并将其性质和甲醇合成活性与使用Na + HCO3-通常用于商业用的催化剂进行比较Cu / ZnO /(Al2O3)催化剂。完全洗涤时,茶(+) - 和Na +基体前体在没有任何其他结构的情况下显示出典型的锌孔沸石(ZM),并且在煅烧后获得的两种催化剂和H-2还原后也表现出类似的特定铜表面积,又向相似的甲醇生产率。由于该结果解释了茶(+)不影响ZM结构,如果Cu,Zn沉淀物被充分洗涤,则不洗涤且较少洗涤的茶(+) - 并制备Na +基体。有趣的是,所有基于茶(+)的催化剂表现出类似的甲醇生产率,而不管洗涤效率,含有更多残留Na +的Na +基于Na +的催化剂显示较小的铜表面区域和较低的甲醇生产率(即,两个参数之间的线性相关性)。由Na +对通过Zn2 +的Cu2 +取代度的抑制作用和高温碳酸盐的形成产生,因此导致催化活性较低。当茶(+)HCO(3)(3)(3)( - )用作沉淀剂时,Na +对Na +的这些负面影响是有效制备活性甲醇合成催化剂的沉淀剂。

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