Selective Hydrogenation of CO2 From Direct Air Capture to CO Over Na-Promoted Pt Dual-Functional Material
Shinta Miyazaki1, Nobutaka Maeda2, Akihiko Anzai1
1Institute for Catalysis, Hokkaido University, Sapporo, Japan.
None:
CO2 capture and reduction (CCR) to CO using dual-functional materials (DFMs) has recently attracted significant attention as a promising strategy for carbon capture and utilization. However, most of the DFMs for CO production reported to date require high-temperature (> 500 °C) and O2-free conditions. Herein, we used spectroscopic characterization under operating conditions for a detailed investigation of the Pt-Na/Al2O3 DFM reported in our previous work that can capture CO2 and produce CO by selective hydrogenation at moderate reaction temperatures (350 °C) in the presence of O2. In situ X-ray absorption spectroscopy measurements revealed that the Pt nanoparticles of Pt-Na/Al2O3 were more oxidized and electron-deficient than those of Pt/Al2O3, even during the reduction step. In situ IR measurements confirmed that the CO and hydrogen species on Pt-Na/Al2O3 desorbed at lower temperatures than those on Pt/Al2O3. In addition, modulation excitation infrared spectroscopy (ME-IR) revealed the formation of Pt-H and HCOO- intermediates. The Pt-Na/Al2O3 material was used for the first time in a system integrating membrane-based direct air capture (m-DAC) and a CCR system for CO production and showed excellent performance. CO selectivity of 93% and CO production concentrations of 1000-2500 ppm were achieved under continuous operation, demonstrating its practical applicability.
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