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SMSI is believed to be critical to resisting carbon formation.
In these circumstances, the process of carbon formation is released.
The cyclical treatment of carbon formation and gasification reduced the carbon formation rate.
At lower pressure (about 100 Torr), amorphous carbon formation is favored over SWCNT formation.
This fact suggests that the mechanism of carbon formation is unlikely [5].
Resistance to carbon formation is also related to the oxygen conductivity of substituted pyrochlores [19].
This is likely the reason for smaller amount of carbon formation over LRuZ.
Also, their basicity is believed to suppress carbon formation by promoting the activation of CO2.
As a result, catalyst deactivation occurs and carbon formation is not observed.
After this process, the obtained samples exhibited a black surface due to carbon formation.
Despite a very low H2O/CH4 molar ratio, no carbon formation is observed.
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