Novel high-pressure/high-temperature reactor cell for in situ and operando x-ray absorption spectroscopy studies of heterogeneous catalysts at synchrotron facilities

Author:

Nassereddine Abdallah1ORCID,Prat Alain1,Ould-Chikh Samy2ORCID,Lahera Eric3,Proux Olivier3ORCID,Delnet William3,Costes Anael1,Maurin Isabelle1ORCID,Kieffer Isabelle3ORCID,Min Sophie3ORCID,Rovezzi Mauro3ORCID,Testemale Denis1ORCID,Cerrillo Olmo Jose Luis2ORCID,Gascon Jorge4ORCID,Hazemann Jean-Louis1ORCID,Aguilar Tapia Antonio5ORCID

Affiliation:

1. Institut Néel, UPR 2940 CNRS - Université Grenoble Alpes 1 , Grenoble F-38000, France

2. KAUST Catalysis Center (KCC), King Abdullah University of Science and Technology (KAUST) 2 , Thuwal 23955, Saudi Arabia

3. OSUG, UAR 832 CNRS - Université Grenoble Alpes 3 , F-38041 Grenoble, France

4. KAUST Catalysis Center (KCC), Advanced Catalytic Materials, King Abdullah University of Science and Technology (KAUST) 4 , Thuwal 23955, Saudi Arabia

5. Institut de Chimie Moléculaire de Grenoble, UAR2607 CNRS- Université Grenoble Alpes 5 , Grenoble F-38000, France

Abstract

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.

Funder

Agence Nationale de La Recherche

Publisher

AIP Publishing

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