Method for preparing nanometer iron oxide red
A red iron oxide, nanotechnology, applied in the direction of iron oxide, iron oxide/iron hydroxide, etc., can solve the problems of poor dispersibility and long working cycle, and achieve the effect of ensuring dispersibility, short drying time and reducing production cost.
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Embodiment 1
[0023] In 250mL0.3mol / L FeSO 4 Add 10mLH to the solution 2 SO 4 , adjust the pH to 4, then add saturated H 2 C 2 o 4 The solution was 200mL, stirred and heated to boiling to form a yellow precipitate. After standing still, the supernatant was poured off, and the precipitate was washed with 40°C deionized water. Repeat 3 times to remove soluble impurities. Slowly add 200 mL of 3% H 2 o 2 solution and at 0.12m 3 The flow of / h is passed into O 2 , maintain the temperature at 40°C, pH 4, and keep stirring until the reaction is completely oxidized to Fe 3+ , react for 20min. Boil to remove residual H 2 o 2 , filtered while hot. After filtering, the precipitate was washed with deionized water, dried at 30° C. for 1.5 h, mixed with ammonium bicarbonate containing 5% of the total mass of the precipitate, and the mixture was calcined at 700° C. for 1.5 h, and the nanomaterial iron oxide red was obtained after grinding.
Embodiment 2
[0025] In 250mL0.4mol / L FeSO 4 Add 10mLH to the solution 2 SO 4 , then add saturated H 2 C 2 o 4 The solution was 250mL, stirred and heated to boiling to form a yellow precipitate. After standing still, the supernatant was poured off, and the precipitate was washed with 40°C deionized water. Repeat 2 times to remove soluble impurities. Slowly add 250 mL of 3% H 2 o 2 solution and at 0.15m 3 The flow of / h is passed into O 2 , maintain the temperature at 40°C, pH 5.0, and keep stirring until the reaction is completely oxidized to Fe 3+ , react for 20min. Boil to remove residual H 2 o 2 , filtered while hot. After filtering, the precipitate was washed with deionized water, dried at 30° C. for 1.5 h, mixed with ammonium bicarbonate containing 6% of the total mass of the precipitate, and the mixture was calcined at 750° C. for 1.5 h, and the nanomaterial iron oxide red was obtained after grinding.
Embodiment 3
[0027] In 250mL0.5mol / L FeSO 4 Add 10mLH to the solution 2 SO 4 , then add saturated H 2 C 2 o 4 The solution was 250mL, stirred and heated to boiling to form a yellow precipitate. After standing still, the supernatant was poured off, and the precipitate was washed with 40°C deionized water. Repeat 3 times to remove soluble impurities. Slowly add 200 mL of 3% H 2 o 2 solution and at 0.16m 3 The flow of / h is passed into O 2 , maintain the temperature at 50°C, pH 5.0, and keep stirring until the reaction is completely oxidized to Fe 3+ , react for 30min. Boil to remove residual H 2 o 2 , filtered while hot. After filtration, the precipitate was washed with deionized water, dried at 40° C. for 1.5 h, mixed with 8% ammonium bicarbonate of the mass of the precipitate, calcined at 750° C. for 1 h, and ground to obtain iron oxide red nanomaterial.
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