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Mechanistic studies of methanol synthesis over Cu from CO/CO 2/H2/H2O mixtures: The source of C in methanol and the role of water

机译:由CO / CO 2 / H2 / H2O混合物在Cu上合成甲醇的机理研究:甲醇中C的来源和水的作用

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The low temperature (403-453 K) conversions of CO/hydrogen and CO_2/hydrogen mixtures (6 bar total pressure) to methanol over copper catalysts are both assisted by the presence of small amounts of water (mole fraction ~0.04-0.5%). For CO_2/hydrogen reaction mixtures, the water product from both methanol synthesis and reverse water-gas shift serves to initiate both reactions in an autocatalytic manner. In the case of CO/D_2 mixtures, very little methanol is produced until small amounts of water are added. The effect of water on methanol production is more immediate than in CO_2/D_2, yet the steady-state rates are similar. Tracer experiments in 13CO/12C_O2/hydrogen (with or without added water) show that the dominant source of C in the methanol product gradually shifts from CO_2 to CO as the temperature is lowered. Cu-bound formate, the major IR visible surface species under CO_2/hydrogen, is not visible in CO/moist hydrogen. Though formate is visible in the tracer experiments, the symmetric stretch is absent. These results, in conjunction with recent DFT calculations on Cu(1 1 1), point to carboxyl as a common intermediate for both methanol synthesis and reverse water-gas shift, with formate playing a spectator co-adsorbate role.
机译:在铜催化剂上,CO /氢气和CO_2 /氢气混合物(总压力为6 bar)的低温(403-453 K)转化为甲醇,这都归功于少量水的存在(摩尔分数〜0.04-0.5%) 。对于CO_2 /氢反应混合物,甲醇合成和水煤气变换产生的水产物均以自催化方式引发两种反应。在使用CO / D_2混合物的情况下,直到添加少量水之前,几乎不会产生甲醇。水对甲醇生产的影响比在CO_2 / D_2中更直接,但稳态速率相似。在13CO / 12C_O2 /氢气(有或没有加水)中进行的示踪实验表明,随着温度降低,甲醇产物中C的主要来源逐渐从CO_2转变为CO。铜结合的甲酸是CO_2 /氢下主要的红外可见表面物种,在CO /湿氢中不可见。尽管在示踪剂实验中可以看到甲酸盐,但不存在对称拉伸。这些结果与最近对Cu(1 1 1)进行的DFT计算相结合,表明羧基是甲醇合成和反向水煤气变换的常见中间体,甲酸酯起着观众共吸附作用。

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