Cerium-zirconium-based solid solution rare earth oxygen-storage material and preparation method thereof
An oxygen storage material, solid solution technology, applied in chemical instruments and methods, physical/chemical process catalysts, chemical/physical processes, etc., can solve problems such as the need for high-pressure equipment and unfavorable industrial production
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[0033] The preparation method of the cerium-zirconium-based solid solution rare earth oxygen storage material of the present invention includes the following steps:
[0034] (1) Preparation of mixed metal nitrate solution: Determine the content of cerium oxide, zirconium oxide and other rare earth oxides except cerium according to the composition of the material and the weight of the target product, and convert it into the weight content of the corresponding raw materials. Cerium nitrate, other rare earth soluble nitrates except cerium and zirconium nitrate are dissolved in water, and a certain organic acid is added to obtain a mixed metal nitrate solution;
[0035] (2) Preparation of the precursor of the cerium-zirconium-based solid solution rare earth oxygen storage material: use 36% industrial ammonia water and pure water 1:1 mixed precipitant, slowly add to the 50-70 ℃ mixed metal nitrate solution, to pH is 3-4, add Ce 3+ / Ce 4+ Convert 1.2-1.5 times the stoichiometric amount o...
Embodiment 1
[0046] 70g cerium nitrate, 20g zirconium nitrate, 5g lanthanum nitrate, 5g yttrium nitrate are dissolved in 1900g deionized water, 5g acetic acid is added, and heated to 50°C to obtain a mixed metal nitrate solution; the industrial ammonia water and pure water have a mass ratio of 1:1 Mix to obtain the precipitant, slowly add the precipitant to the mixed metal nitrate solution, until the pH value is 3, add 11.6g of hydrogen peroxide, continue to add the precipitant to the pH value of 9, keep for 5h; wash, dehydration; after dehydration The cerium-zirconium-based solid solution rare earth oxygen storage material precursor was mixed with 11 g of lauric acid, sheared and dispersed, and calcined at 600° C. for 4 hours to obtain the cerium-zirconium-based solid solution rare earth oxygen storage material.
[0047] The specific surface area of the cerium-zirconium-based solid solution rare earth oxygen storage material is 100.55m 2 ·G -1 , The particle size is 90nm, see XRD diagram fi...
Embodiment 2
[0049] 21g cerium nitrate, 133g zirconium nitrate, 5.5g neodymium nitrate, 1.5g yttrium nitrate dissolved in 1900g deionized water, add 32g citric acid, and heat to 70℃ to obtain a mixed metal nitrate solution; compare industrial ammonia water to pure water by mass Mix 1:1 to obtain a precipitant, slowly add the precipitant to obtain a mixed metal nitrate solution until the pH is 3, add 4.4g of hydrogen peroxide, continue to add the precipitant to a pH of 9, keep for 2h; wash and dehydrate; The dehydrated cerium-zirconium-based solid solution rare earth oxygen storage material precursor and 30 g of alkenyl succinic anhydride are shear-dispersed, and calcined at 450° C. for 8 hours to obtain the cerium-zirconium-based solid solution rare earth oxygen storage material.
[0050] The specific surface area of the cerium-zirconium-based solid solution rare earth oxygen storage material is 120.18 m 2 ·G -1 , Take the cerium-zirconium-based solid solution rare earth oxygen storage mater...
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