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首页> 外文期刊>Review of Scientific Instruments >A versatile elevated-pressure reactor combined with an ultrahigh vacuum surface setup for efficient testing of model and powder catalysts under clean gas-phase conditions
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A versatile elevated-pressure reactor combined with an ultrahigh vacuum surface setup for efficient testing of model and powder catalysts under clean gas-phase conditions

机译:多功能高压反应器结合超高真空表面设置,可在清洁的气相条件下有效测试模型催化剂和粉末催化剂

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摘要

A small-volume reaction cell for catalytic or photocatalytic testing of solid materials at pressures up to 1000 Torr has been coupled to a surface-science setup used for standard sample preparation and characterization under ultrahigh vacuum (UHV). The reactor and sample holder designs allow easy sample transfer from/to the UHV chamber, and investigation of both planar and small amounts of powder catalysts under the same conditions. The sample is heated with an infrared laser beam and its temperature is measured with a compact pyrometer. Combined in a regulation loop, this system ensures fast and accurate temperature control as well as clean heating. The reaction products are automatically sampled and analyzed by mass spectrometry and/or gas chromatography (GC). Unlike previous systems, our GC apparatus does not use a recirculation loop and allows working in clean conditions at pressures as low as 1 Torr while detecting partial pressures smaller than 10-4 Torr. The efficiency and versatility of the reactor are demonstrated in the study of two catalytic systems: butadiene hydrogenation on Pd(100) and CO oxidation over an AuRh/TiO2 powder catalyst.
机译:用于在高达1000 Torr的压力下对固体材料进行催化或光催化测试的小体积反应池已与用于标准样品制备和超高真空(UHV)表征的表面科学装置相结合。反应器和样品架的设计使样品易于进出超高压室,并可以在相同条件下研究平面和少量粉末催化剂。用红外激光束加热样品,并用紧凑型高温计测量其温度。结合在调节回路中,该系统可确保快速准确的温度控制以及清洁的加热。将反应产物自动取样并通过质谱和/或气相色谱法(GC)进行分析。与以前的系统不同,我们的GC设备不使用再循环回路,允许在清洁的条件下以低至1 Torr的压力工作,同时检测小于10 -4 Torr的分压。该反应器的效率和多功能性在两种催化体系的研究中得到了证明:在Pd(100)上丁二烯加氢和在AuRh / TiO 2 粉末催化剂上的CO氧化。

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  • 来源
    《Review of Scientific Instruments》 |2013年第9期|11-77|共7页
  • 作者

    Morfin; Franck; Piccolo; Laurent;

  • 作者单位

    Institut de recherches sur la catalyse et l'environnement de Lyon (IRCELYON), UMR 5256 CNRS & Université Lyon 1, 2 avenue Albert Einstein, F-69626 Villeurbanne, France|c|;

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