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In this study, we have designed and successfully prepared a highly active PtFe nano-alloy catalysts with ultra-low Pt loading for the preferential oxidation of CO, over which CO can be completely removed at room temperature.
CO can be completely oxidized at 160 °C.
Only about one third of the carbonyl type CO can be reduced at the same time.
The tolerance to CO can be varied significantly using a different experimental design of fuel utilization and anode Pt loading.
The presence of Wiggins and Co can be traced back to the Tour de France of 2010, which the triple Olympic gold medallist describes as "a disaster".
Here, we demonstrated that nitrogen-doped single layer graphene shell encapsulating non-precious metal Co can be used as a highly efficient catalyst for Li O2 batteries.
These results suggest that exposure to most cigarette smoke constituents, except CO, can be reduced by switching from CC10 to HC.
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The improved performance of CGN/SnO2-Co can be attributed to the highly stable and conductive CGN framework, ultra-small size of SnO2 nanoparticles, and Co doping effect.
Funny How Sweet Co-Co Can Be.
Hydrogen-enriched stream with traces of CO2 and CO can be produced by steam methane reforming.
Active catalysts for the synthesis of methanol from H2/CO2 and H2/CO can be prepared by dispersing Cu on ZrO2.
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