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For LRuZ (Fig. 3c), the reduction temperatures were much lower compared to LPtZ and LZ.
The reduction temperatures of catalysts were all reduced except the one with Mg.
The TPR spectrum showed lower reduction temperatures respect to similar Co Fe catalysts.
Bi nanopolygons or nanodots were selectively formed at the surface of BiOCl nanosheets on controlling the reduction temperatures.
The total metal loading of the catalyst was 30 wt%, and two reduction temperatures, 300 and 875 °C, were studied.
The results showed NaN3 covered some Pd species and increased the reduction temperatures of catalysts.
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The reduction temperature also increases from approximately 450 to 500 °C.
Addition of potassium strongly influenced the reduction temperature of NiO.
Increasing the reduction temperature to 400 °C reduced the impurity amount of NiO, and only with a reduction temperature of 500 °C, no NiO could be seen.
The analysis was made at the combustion temperature of 925 °C and the reduction temperature of 640 °C.
Ni species are needed to be reduced before reaction, so the reduction temperature was determined by temperature-programmed reduction (TPR).
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