Published 2016 | Version v1
Journal article

Dry Reforming of Ethane and Butane with CO2 over PtNi/CeO2 Bimetallic Catalysts

  • 1. Tsinghua University, Beijing (China). Dept. of Chemical Engineering
  • 2. Brookhaven National Laboratory (BNL), Upton, NY (United States). Dept. of Chemistry
  • 3. Tsinghua University, Beijing (China). College of Materials Science and Engineering

Description

Dry reforming is a potential process to convert CO2 and light alkanes into syngas (H2 and CO), which can be subsequently transformed to chemicals and fuels. Here in this work, PtNi bimetallic catalysts have been investigated for dry reforming of ethane and butane using both model surfaces and supported powder catalysts. The PtNi bimetallic catalyst shows an improvement in both activity and stability as compared to the corresponding monometallic catalysts. The formation of PtNi alloy and the partial reduction of Ce4+ to Ce3+ under reaction conditions are demonstrated by in-situ Ambient Pressure X-ray Photoemission Spectroscopy (AP-XPS), X-ray Diffraction (XRD) and X-ray Absorption Fine Structure (XAFS) measurements. A Pt-rich bimetallic surface is revealed by Diffuse Reflectance Infrared Fourier Transform Spectroscopy (DRIFTS) following CO adsorption. Combined in-situ experimental results and Density Functional Theory (DFT) calculations suggest that the Pt-rich PtNi bimetallic surface structure would weaken the binding of surface oxygenates/carbon species and reduce the activation energy for C-C bond scission, leading to an enhanced dry reforming activity.

Availability note (English)

Available from http://www.osti.gov/pages/biblio/1342631; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period

Additional details

Publishing Information

Journal Title
ACS Catalysis
Journal Volume
6
Journal Issue
11
Journal Page Range
p. 7283-7292
ISSN
2155-5435