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首页> 外文期刊>Angewandte Chemie >Isothermal Cyclic Conversion of Methane into Methanol over Copper-Exchanged Zeolite at Low Temperature
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Isothermal Cyclic Conversion of Methane into Methanol over Copper-Exchanged Zeolite at Low Temperature

机译:低温下铜交换沸石在甲醇中甲烷的等温循环转化

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摘要

Direct partial oxidation of methane into methanol is a cornerstone of catalysis. The stepped conversion of methane into methanol currently involves activation at high temperature and reaction with methane at decreased temperature, which limits applicability of the technique. The first implementation of copper-containing zeolites in the production of methanol directly from methane is reported, using molecular oxygen under isothermal conditions at 200 degrees C. Copper-exchanged zeolite is activated with oxygen, reacts with methane, and is subsequently extracted with steam in a repeated cyclic process. Methanol yield increases with methane pressure, enabling reactivity with less reactive oxidized copper species. It is possible to produce methanol over catalysts that were inactive in prior state of the art systems. Characterization of the activated catalyst at low temperature revealed that the active sites are small clusters of copper, and not necessarily di- or tricopper sites, indicating that catalysts can be designed with greater flexibility than formerly proposed.
机译:将甲烷的直接部分氧化成甲醇是催化的基石。将甲烷转化为甲醇目前涉及在高温下激活,并在降低温度下与甲烷反应,这限制了该技术的适用性。首先在生产甲醇生产中的含铜沸石的第一次实施,在等温条件下在200摄氏度下使用分子氧。用氧气激活铜交换的沸石,用甲烷反应,随后用蒸汽提取蒸汽重复的循环过程。甲醇产率随甲烷压力的增加,使反应性与较少的反应性氧化铜物质增加。可以在现有技术中产生不活跃的催化剂生产甲醇。在低温下对活化催化剂的表征显示活性位点是铜的小簇,而不是必然的二或三角孔位点,表明催化剂可以设计成比以前提出的更大的柔韧性。

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