NiAl2O4-derived active sites over Ni/Al2O3 catalysts for dry reforming of methane: Temperature-dependent interplay between support morphology and thermodynamic driving forces
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The formation of NiAl2O4 during calcination and the subsequent generation of Ni–oxygen vacancy (Ni–Ov) interfaces during H2 reduction play a crucial role in suppressing coke formation in the dry reforming of methane ...
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