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Nonoxidative Dehydrogenation of Methanol to MethylFormate through Highly Stable and Reusable CuMgO-Based Catalysts

机译:甲醇非氧化脱氢为甲基通过高度稳定和可重复使用的基于CuMgO的催化剂形成甲酸酯

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摘要

Nonoxidative dehydrogenation of methanol to methyl formate over a CuMgO-based catalyst was investigated. Although the active site is metallic copper (Cu0), the best reaction conditions were obtained by tuning the ratio of Cu/Mg and doping the catalyst with 1 wt % of Pd to achieve a very specific activity for methyl formate synthesis. On the basis of the CO2 temperature-programmed desorption study, the basic strength of the catalyst plays a role in the efficient conversion of methanol to methyl formate via dehydrogenation. These CuMgO-based catalysts show excellent thermal stability during the reaction and the regeneration processes. Approx. 80% methanol conversion with constant selectivity to methyl formate was achieved even after 4 rounds of usage for a total reaction time exceeding 200 h, indicative of their potential for practical applications.
机译:研究了在基于CuMgO的催化剂上甲醇的非氧化脱氢为甲酸甲酯。尽管活性部位是金属铜(Cu 0 ),但通过调节Cu / Mg的比例并向催化剂中掺入1 wt%的Pd可以获得最佳的反应条件,以获得最佳的比活度。甲酸甲酯的合成。根据CO2程序升温脱附研究,催化剂的基本强度在甲醇通过脱氢有效转化为甲酸甲酯方面发挥了作用。这些基于CuMgO的催化剂在反应和再生过程中表现出出色的热稳定性。大约即使经过四轮使用,总反应时间超过200小时,甲醇转化率仍达到80%,并且对甲酸甲酯的选择性恒定,这表明它们具有实际应用潜力。

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