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Ruthenium Catalyst Supported on Multi-Walled Carbon Nanotubes for CO Oxidation 被引量:1

Ruthenium Catalyst Supported on Multi-Walled Carbon Nanotubes for CO Oxidation
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摘要 This work proposes the synthesis of the 5%wt Ru on MWCNT catalyst and the influence of feed rate and testing variables for low-temperature oxidation affecting the CO<sub>2</sub> yield. Morphology and incorporation of the nanoparticles in carbon nanotubes were investigated by specific surface area (BET method);thermogravimetric analyses (TGA);X-ray diffraction;Raman spectroscopy, transmission electron microscopy (TEM) and XPS. The conversions of CO and O<sub>2</sub> were mostly 100% in groups C1 and C2 (temperature between 200 and 500<span style="white-space:nowrap;">&#176</span>C with low WHSV). In order to assess the effect of mass on catalytic activity, condition C3 was tested at even lower temperatures. In the tested catalyst, high activity (100% CO and O<sub>2</sub> conversion) was observed, keeping it active under reaction conditions, suggesting oxi-reduction of the RuO<sub>2</sub> at surface without affecting the MWCNT but Lewis acid influencing the CO<sub>2</sub> yield. This work proposes the synthesis of the 5%wt Ru on MWCNT catalyst and the influence of feed rate and testing variables for low-temperature oxidation affecting the CO<sub>2</sub> yield. Morphology and incorporation of the nanoparticles in carbon nanotubes were investigated by specific surface area (BET method);thermogravimetric analyses (TGA);X-ray diffraction;Raman spectroscopy, transmission electron microscopy (TEM) and XPS. The conversions of CO and O<sub>2</sub> were mostly 100% in groups C1 and C2 (temperature between 200 and 500<span style="white-space:nowrap;">&#176</span>C with low WHSV). In order to assess the effect of mass on catalytic activity, condition C3 was tested at even lower temperatures. In the tested catalyst, high activity (100% CO and O<sub>2</sub> conversion) was observed, keeping it active under reaction conditions, suggesting oxi-reduction of the RuO<sub>2</sub> at surface without affecting the MWCNT but Lewis acid influencing the CO<sub>2</sub> yield.
作者 Camila Emilia Kozonoe Reinaldo Giudici Martin Schmal Camila Emilia Kozonoe;Reinaldo Giudici;Martin Schmal(Department of Chemical Engineering, Escola Politécnica, Universidade de S&#227o Paulo, S&#227o Paulo, Brazil;Federal University of Rio de Janeiro, COPPE/PEQ/Nucat, Rio de Janeiro, Brazil)
出处 《Modern Research in Catalysis》 CAS 2021年第3期73-91,共19页 催化剂现代研究(英文)
关键词 Multi-Walled Carbon Nanotubes RUTHENIUM CO Oxidation Multi-Walled Carbon Nanotubes Ruthenium CO Oxidation
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