Nassereddine Abdallah, Prat Alain, Ould-Chikh Samy, Lahera Eric, Proux Olivier, Delnet William, Costes Anael, Maurin Isabelle, Kieffer Isabelle, Min Sophie, Rovezzi Mauro, Testemale Denis, Cerrillo Olmo Jose Luis, Gascon Jorge, Hazemann Jean-Louis, Aguilar Tapia Antonio
Institut Néel, UPR 2940 CNRS - Université Grenoble Alpes, Grenoble F-38000, France.
KAUST Catalysis Center (KCC), King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia.
Rev Sci Instrum. 2024 May 1;95(5). doi: 10.1063/5.0202557.
This paper presents the development of a novel high-pressure/high-temperature reactor cell dedicated to the characterization of catalysts using synchrotron x-ray absorption spectroscopy under operando conditions. The design of the vitreous carbon reactor allows its use as a plug-flow reactor, monitoring catalyst samples in a powder form with a continuous gas flow at high-temperature (up to 1000 °C) and under high pressure (up to 1000 bar) conditions, depending on the gas environment. The high-pressure/high-temperature reactor cell incorporates an automated gas distribution system and offers the capability to operate in both transmission and fluorescence detection modes. The operando x-ray absorption spectroscopy results obtained on a bimetallic InCo catalyst during CO2 hydrogenation reaction at 300 °C and 50 bar are presented, replicating the conditions of a conventional microreactor. The complete setup is available for users and permanently installed on the Collaborating Research Groups French Absorption spectroscopy beamline in Material and Environmental (CRG-FAME) sciences and French Absorption spectroscopy beamline in Material and Environmental sciences at ultra-high dilution (FAME-UHD) beamlines (BM30 and BM16) at the European Synchrotron Radiation Facility in Grenoble, France.
本文介绍了一种新型高压/高温反应池的研发,该反应池专门用于在操作条件下使用同步加速器X射线吸收光谱对催化剂进行表征。玻璃碳反应池的设计使其可用作活塞流反应器,根据气体环境,在高温(高达1000°C)和高压(高达1000巴)条件下,以连续气流监测粉末形式的催化剂样品。该高压/高温反应池集成了自动气体分配系统,并具备在透射和荧光检测模式下运行的能力。展示了在300°C和50巴的二氧化碳加氢反应过程中,在双金属铟钴催化剂上获得的操作X射线吸收光谱结果,模拟了传统微反应器的条件。整套装置可供用户使用,并永久安装在法国格勒诺布尔欧洲同步辐射装置的材料与环境科学合作研究组法国吸收光谱光束线(CRG-FAME)以及超高稀释材料与环境科学法国吸收光谱光束线(FAME-UHD)(BM30和BM16)上。