The activity of Ni/ZrO
2 catalysts for dry reforming and its thermal stability are significantly enhanced by activation and regeneration in presence of CO
2. The exposure to CO2
mitigates the decoration of ZrO
2 on nickel surface and creates a large ZrO
2-Ni interface. Small and well-defined Ni particles supported on SiO
2 and ZrO
2 were prepared by a novel approach via self-assembed nanocapsules. Ni/ZrO
2 with small metal nanoparticles contains a high fraction of perimeter Ni, which is better accessible to surface O species facilitating carbon removal and which leads to enhanced DRM stability.
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The activity of Ni/ZrO
2 catalysts for dry reforming and its thermal stability are significantly enhanced by activation and regeneration in presence of CO
2. The exposure to CO2
mitigates the decoration of ZrO
2 on nickel surface and creates a large ZrO
2-Ni interface. Small and well-defined Ni particles supported on SiO
2 and ZrO
2 were prepared by a novel approach via self-assembed nanocapsules. Ni/ZrO
2 with small metal nanoparticles contains a high fraction of perimeter Ni, which is better accessib...
»