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首页> 外文期刊>Catalysis Letters >Comparative Study of the Physico-Chemical Properties of Nanocrystalline CuO–ZnO–Al2O3 Prepared from Different Precursors: Hydrogen Production by Vaporeforming of Bioethanol
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Comparative Study of the Physico-Chemical Properties of Nanocrystalline CuO–ZnO–Al2O3 Prepared from Different Precursors: Hydrogen Production by Vaporeforming of Bioethanol

机译:不同前驱体制备的纳米晶态CuO–ZnO–Al2 O3 的理化性质比较研究:生物乙醇气相形成制氢

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摘要

The physico-chemical and catalytic properties of CuO–ZnO–Al2O3, synthesised by sol–gel process (SG), impregnation method (IMP) and a combination of both preparative procedures (ISG), were comparatively studied. Samples were characterised with thermogravimetric-differential thermal analysis (TG–DTA), X-ray powder diffraction (XRD), X-ray photoelectron spectroscopy (XPS) techniques and oxygen chemisorption. XPS study was not consistent with the bulk findings and revealed the presence of Cu2+, Cu+ and/or Cu0 species at the catalysts surface. Surface analysis revealed also that copper enrichment occurred mainly at the surface of SG and IMP solids. The reducibility of the mixed oxides catalysts was always modified with respect to that of pure copper oxides phases and the reduction of CuO was markedly affected by the presence of ZnO–Al2O3. Temperature programmed reduction (H2-TPR) analysis showed that the temperature corresponding to maximum reduction rate of copper oxide was ca. 256 °C for IMP sample and ca. 296 °C for both SG and ISG solids. These latter showing a high resistance to reduction suggest a strong interaction of copper species with ZnO–Al2O3, limiting thus copper particles sintering. CuO particle size was found to be ca. 20 nm for both SG and ISG solids and ca. 40 nm for IMP catalysts. Besides, at 300 °C SG and ISG samples showed superior amount of reversible O2 uptake with respect to IMP solids. Catalytic activity of CuO–ZnO–Al2O3 was measured with bio-ethanol steam reforming reaction. SG catalysts exhibited both high selectivity to hydrogen and high stability with time on stream than IMP and ISG catalysts. This was attributed both to the particles size of copper species, their amount on the catalytic surface and to their strong interaction with ZnO–Al2O3.
机译:通过溶胶-凝胶法(SG),浸渍法(IMP)和两种制备方法(ISG)的组合合成了CuO-ZnO-Al2 O3 的理化和催化性能。比较研究。通过热重差热分析(​​TG-DTA),X射线粉末衍射(XRD),X射线光电子能谱(XPS)技术和氧化学吸附来表征样品。 XPS研究与大量发现不一致,并揭示了在催化剂表面存在Cu 2+,Cu +和/或Cu 0物种。表面分析还表明,铜富集主要发生在SG和IMP固体的表面。相对于纯铜氧化物相,混合氧化物催化剂的还原性总是会改变,而ZnO–Al2 O3 的存在会显着影响CuO的还原。程序升温还原(H2 -TPR)分析表明,对应于氧化铜最大还原速率的温度大约为。用于IMP样品的256°C和SG和ISG固体均为296°C。后者显示出较高的抗还原性,表明铜物质与ZnO–Al2 O3 有很强的相互作用,从而限制了铜颗粒的烧结。发现CuO的粒度为约。 SG和ISG固体均为20 nm,大约为20 nm。 IMP催化剂为40 nm。此外,相对于IMP固体,在300°C时SG和ISG样品显示出大量的可逆O2 吸收。用生物乙醇蒸汽重整反应测定了CuO-ZnO-Al2 O3 的催化活性。与IMP和ISG催化剂相比,SG催化剂对氢气的选择性高,并且在运行过程中具有较高的稳定性。这既归因于铜物种的粒径,其在催化表面的含量,也归因于它们与ZnO–Al2 O3 的强相互作用。

著录项

  • 来源
    《Catalysis Letters》 |2009年第2期|234-241|共8页
  • 作者

    A. Kaddouri; C. Mazzocchia;

  • 作者单位

    Institut de recherches sur la catalyse et l’environnement de Lyon Université Lyon 1 CNRS UMR 5256 IRCELYON 2 avenue Albert Einstein 69626 Villeurbanne France;

    Department of Chemistry Materials and Chemical Engineering “G. Natta” Politecnico di Milano P.zza L. da Vinci 32 20133 Milan Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CuO–ZnO–Al2O3; Sol–gel process; Reducibility; Bio-ethanol steam reforming;

    机译:CuO-ZnO-Al2O3;溶胶-凝胶法;还原性;生物乙醇蒸汽重整;

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