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用于低浓度甲烷直接氧化制甲醇的铜锌双金属共改性H-MOR催化剂

Cu and Zn Bimetallic Co-Modified H-MOR Catalyst for Direct Oxidation of Low-Concentration Methane to Methanol.

作者信息

Fu Yan, Li Cunshuo, An Shengxin, Li Wenzhi, Yuan Liang

机构信息

School of Earth and Environment, Anhui University of Science and Technology, Huainan 232001, China.

Laboratory of Basic Research in Biomass Conversion and Utilization, Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026, China.

出版信息

ACS Omega. 2023 Jul 18;8(30):27179-27189. doi: 10.1021/acsomega.3c02388. eCollection 2023 Aug 1.

Abstract

The direct oxidation of low-concentration methane to value-added chemicals can not only reduce carbon emission but also provide an alternative production route for fossil fuels. Herein, we proposed a novel catalyst for the direct oxidation of low-concentration methane to methanol via the impregnation method, which selected copper and zinc as co-modifiers to modify the MOR catalyst. The highest methanol yield of 71.35 μmol·g·h was obtained over a bimetallic CuZn-MOR catalyst. The catalyst retained good activity after three cycles of testing experiments, indicating good recyclability. Based on the results of performance tests and characterization studies, it was confirmed that Cu species bound to the zeolite framework were the main active sites for methane oxidation. The introduction of Zn decreased the generation of the octahedrally coordinated extra-framework aluminum, which promoted the dispersion of Cu within the zeolite framework. In other words, more tetrahedrally coordinated FAl-stabilized Cu species were presented in our CuZn-MOR catalyst system in comparison to the monometallic Cu-MOR catalyst. Benefiting from the aforementioned modification, the agglomerative sintering of the metal during the reaction was effectively prevented. This work may provide a feasible guide for the future optimization of Cu-based catalysts designed for the selective oxidation of methane.

摘要

将低浓度甲烷直接氧化为高附加值化学品,不仅可以减少碳排放,还能为化石燃料提供一条替代生产路线。在此,我们通过浸渍法提出了一种用于将低浓度甲烷直接氧化为甲醇的新型催化剂,该催化剂选择铜和锌作为共改性剂来修饰丝光沸石(MOR)催化剂。在双金属CuZn-MOR催化剂上获得了最高甲醇产率71.35 μmol·g·h。经过三轮测试实验后,该催化剂仍保持良好的活性,表明其具有良好的可回收性。基于性能测试和表征研究结果,证实与沸石骨架结合的铜物种是甲烷氧化的主要活性位点。锌的引入减少了八面体配位的骨架外铝的生成,促进了铜在沸石骨架内的分散。换句话说,与单金属Cu-MOR催化剂相比,我们的CuZn-MOR催化剂体系中存在更多四面体配位的FAl稳定的铜物种。受益于上述改性,有效防止了反应过程中金属的团聚烧结。这项工作可为未来优化用于甲烷选择性氧化的铜基催化剂提供可行的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21d2/10399163/d493c8afefb0/ao3c02388_0002.jpg

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