Method for producing nano-scale rare earth doping composite oxides sosoloid with low-temperature carbothermic method
A composite oxide, rare earth doping technology, applied in the direction of calcium/strontium/barium oxide/hydroxide, etc., can solve the problems of cumbersome steps, difficult to control particle size, etc., to achieve high reactivity, short reaction cycle, process simple effect
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Embodiment 1
[0020] Prepare 0.25M Ca(NO 3 ) 2 , 0.5M Ce(NO 3 ) 3 , 0.625M CaAC 2 Take 15ml of each solution and mix in a ceramic reactor, add 15ml of distilled water to further dissolve and mix, heat with an electric heating mantle, control the heating temperature to 150°C, the solution changes from sol to gel until self-propagating combustion occurs, and releases A large amount of brown gas produces a fluffy powder. After the gas is dissipated, the powder is collected, which is the self-combustion precursor powder; weigh an appropriate amount of the precursor powder and put it into a porcelain boat, and calcinate at 750°C for 2 hours in a muffle furnace to obtain a calcium oxide-based cerium-doped composite oxide solid solution.
Embodiment 2
[0022] Prepare 0.25M Ca(NO 3 ) 2 , 0.75M La(NO 3 ) 3 , 1.25M CaAC 2 Take 15ml of each solution and mix in a ceramic reactor, add 15ml of distilled water to further dissolve and mix, heat with an electric heating mantle, control the heating temperature to 140°C, the solution changes from sol to gel until self-propagating combustion occurs, and releases A large amount of brown gas produces a fluffy powder. After the gas is dissipated, the powder is collected, which is the self-combustion precursor powder; weigh an appropriate amount of the precursor powder and put it into a porcelain boat, and calcinate at 800°C for 1.5h in a muffle furnace to obtain calcium oxide-based lanthanum doped Composite oxide solid solution.
Embodiment 3
[0024] Prepare 0.4M Ca(NO 3 ) 2 , 1.0M Ce(NO 3 ) 3 , 1.0M CaAC 2 Take 15ml of each solution and mix in a ceramic reactor, add 15ml of distilled water to further dissolve and mix, heat with an electric heating mantle, control the heating temperature to 160°C, the solution changes from sol to gel until self-propagating combustion occurs, and releases A large amount of brown gas produces a fluffy powder. After the gas is dissipated, the powder is collected, which is the self-combustion precursor powder; weigh an appropriate amount of the precursor powder and put it into a porcelain boat, and calcinate at 900°C for 1 hour in a muffle furnace to obtain a calcium oxide-based cerium-doped composite oxide solid solution.
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