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首页> 外文期刊>Journal of Colloid and Interface Science >Surface and texture characterization of alumina-supported copper and mixed copper-manganese oxide catalysts and their formate precursors
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Surface and texture characterization of alumina-supported copper and mixed copper-manganese oxide catalysts and their formate precursors

机译:氧化铝负载的铜和铜-锰氧化物混合催化剂及其甲酸前体的表面和织构表征

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摘要

Alumina-supported copper and copper-manganese oxide catalysts as well as the parent formates were characterized by means of FTIR spectroscopy in situ and nitrogen physisorption. The IR spectroscopic results are discussed on the basis of the deposition scheme proposed recently by Kapteijn et al. (J. Catal. 150, 94 (1994). The infrared bands in the high-frequency region (OH stretches) indicate that the aqueous copper species formed in the solutions are deposited on the basic and neutral surface OH groups, while as our previous studies show the aqueous manganese species are deposited on the basic and acidic OH groups. However, the aqueous manganese species are deposited on the basic and neutral OH groups in the presence of copper ions (pH 4.6-4.7). The deposition of the aqueous metal species on the protonated basic OH groups occurs as a result of the "ion-pairing" process. The driving forces resulting in the deposition of the aqueous metal species on the neutral OH groups are considered to be hydrogen bonds. The deposition of the formate ions is also discussed. The higher uptake of copper as compared to manganese is discussed in terms of the metal ion properties (electronic configuration, the ability to form hydrogen bonds of different strength, metal species-support interaction). The nitrogen physisorption shows that the initial mesoporous character of gamma-Al2O3 structure does not change during impregnation. The P-FHH values which characterized the adsorbent-adsorbate interaction forces are calculated. The comparative analysis of the pore size distribution curves of the oxide-supported samples and their parent formates proves to be a useful tool to elucidate the metal species-support interaction strength. (C) 2000 Academic Press. [References: 42]
机译:氧化铝负载的铜和铜-锰氧化物催化剂以及母体的形态通过原位FTIR光谱和氮物理吸附来表征。基于Kapteijn等人最近提出的沉积方案讨论了IR光谱结果。 (J. Catal。150,94(1994)。高频区域的红外波段(OH拉伸)表明溶液中形成的水​​性铜物质沉积在碱性和中性表面OH基上,而我们以前研究表明,锰水溶液沉积在碱性和酸性OH上,但是在铜离子(pH 4.6-4.7)存在下锰水溶液沉积在碱性和中性OH上。质子化的碱性OH基团上的“氢键”是“离子对”过程的结果,导致水性金属分子沉积在中性OH基团上的驱动力被认为是氢键。从金属离子特性(电子构型,形成不同强度的氢键的能力,金属种类与载体的相互作用)方面,讨论了与锰相比,铜吸收量更高的情况。 )。氮的物理吸附表明,在浸渍过程中,γ-Al2O3结构的初始介孔特性没有改变。计算表征吸附剂-吸附物相互作用力的P-FHH值。氧化物负载的样品及其母体的孔径分布曲线的比较分析证明是阐明金属与载体相互作用强度的有用工具。 (C)2000学术出版社。 [参考:42]

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