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利用ZnGaO尖晶石的配位不饱和位点调控合成气制轻质烯烃的反应路径。

Steering the reaction pathway of syngas-to-light olefins with coordination unsaturated sites of ZnGaO spinel.

作者信息

Li Na, Zhu Yifeng, Jiao Feng, Pan Xiulian, Jiang Qike, Cai Jun, Li Yifan, Tong Wei, Xu Changqi, Qu Shengcheng, Bai Bing, Miao Dengyun, Liu Zhi, Bao Xinhe

机构信息

State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, PR China.

Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, PR China.

出版信息

Nat Commun. 2022 May 18;13(1):2742. doi: 10.1038/s41467-022-30344-1.

Abstract

Significant progress has been demonstrated in the development of bifunctional oxide-zeolite catalyst concept to tackle the selectivity challenge in syngas chemistry. Despite general recognition on the importance of defect sites of metal oxides for CO/H activation, the actual structure and catalytic roles are far from being well understood. We demonstrate here that syngas conversion can be steered along a highly active and selective pathway towards light olefins via ketene-acetate (acetyl) intermediates by the surface with coordination unsaturated metal species, oxygen vacancies and zinc vacancies over ZnGaO spinel-SAPO-34 composites. It gives 75.6% light-olefins selectivity and 49.5% CO conversion. By contrast, spinel-SAPO-34 containing only a small amount of oxygen vacancies and zinc vacancies gives only 14.9% light olefins selectivity at 6.6% CO conversion under the same condition. These findings reveal the importance to tailor the structure of metal oxides with coordination unsaturated metal sites/oxygen vacancies in selectivity control within the oxide-zeolite framework for syngas conversion and being anticipated also for CO hydrogenation.

摘要

在开发双功能氧化物-沸石催化剂概念以应对合成气化学中的选择性挑战方面已取得显著进展。尽管人们普遍认识到金属氧化物缺陷位点对CO/H活化的重要性,但其实际结构和催化作用仍远未得到充分理解。我们在此证明,通过ZnGaO尖晶石-SAPO-34复合材料表面具有配位不饱和金属物种、氧空位和锌空位的表面,合成气转化可以通过乙烯酮-乙酸酯(乙酰基)中间体沿着一条高活性和选择性的途径导向轻质烯烃。其轻质烯烃选择性为75.6%,CO转化率为49.5%。相比之下,仅含有少量氧空位和锌空位的尖晶石-SAPO-34在相同条件下,CO转化率为6.6%时,轻质烯烃选择性仅为14.9%。这些发现揭示了在氧化物-沸石框架内,为合成气转化以及预期的CO加氢量身定制具有配位不饱和金属位点/氧空位的金属氧化物结构对于选择性控制的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24ec/9117195/089a4e41f52b/41467_2022_30344_Fig1_HTML.jpg

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