Hydrogen-storing material with low-cerium and production thereof
A technology of oxygen storage materials and cerium oxide, which is applied in the field of oxygen storage materials, carriers and additives, to achieve the effects of increased pore volume, excellent thermal stability, and high phase stability
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Embodiment 1
[0036] Prepare an oxygen storage material with yttrium oxide as an auxiliary agent, and calculate the oxide precursors cerium nitrate, zirconium nitrate and yttrium nitrate Y according to the content of metal elements in ceria, zirconium oxide and yttrium oxide as the constituent components of the given material the weight of. A certain amount of cerium nitrate, zirconium nitrate and yttrium nitrate are weighed in proportion to prepare a mixed solution of nitrate. Then, under stirring condition, it is dripped into the reaction vessel co-currently with ammonia water, and the added amount of the precipitant keeps the pH value of the reaction medium at about 13. After the reactants are fully precipitated, stop stirring and age for about 10 hours, then carry out solid-liquid separation by suction filtration. deal with. The surfactant is a polyvinyl alcohol solution with a concentration of 20%. The solid phase treated with the surfactant is dried at 150° C. for 24 hours, and the...
Embodiment 2
[0041] To prepare the oxygen storage material with yttrium oxide as the auxiliary agent, the specific preparation method is basically the same as the method in Example 1 of this part. In the reaction vessel, the pH value of the precipitation reaction solution was kept at 8; the second was the calcination temperature of 600°C. The measurement results of oxygen storage, specific surface area and pore volume are listed in Table 2 below.
[0042]
Embodiment 3
[0044] To prepare the oxygen storage material with yttrium oxide as the auxiliary agent, the specific preparation method is basically the same as the method in Example 1 of this part. The difference lies in that, first, the precipitant is a mixed solution prepared from ammonia water and ammonium carbonate solution, which is mixed with nitric acid. The mixed salt solution was added to the reaction vessel in parallel, and the pH value of the precipitation reaction solution was kept at 9; the second was to obtain low-cerium oxygen storage materials by calcination at 800°C for 8 hours, and then some samples were aged at 1000°C for 10 hours. The measurement results of oxygen storage, specific surface area and pore volume are listed in Table 3 below.
[0045]
sample
composition
oxygen storage
(μmol / g)
BET specific surface
(m 2 / g)
Kong Rong
B-Zr75800
Ce 0.15 Zr 0.75 Y 0.1 O x
222.9
107.3 ...
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