A kind of hypergravity preparation method of cysteine-modified magnetic nanomaterial
A technology of cysteine and magnetic nanometers, applied in the direction of magnetic materials, magnetic objects, inorganic materials, etc., can solve the problem of lack of low-cost macro-engineering amplification, achieve low preparation costs, highlight industrial application prospects, and prepare The effect of simple method
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Embodiment 1
[0021] A hypergravity preparation method for cysteine-modified magnetic nanomaterials, comprising the steps of:
[0022] (1) FeCl 2 • 4H 2 O and FeCl 3 •6H 2 O, according to the molar ratio of 1:1.9, the iron salt solution with a cation concentration of 0.5mol / L was prepared; in addition, according to Fe 3+ and OH - The molar ratio is 1:6 to prepare sodium hydroxide aqueous solution; preheat the above-mentioned iron salt mixed solution and lye to 80°C, adjust the volume flow rate of the two raw material liquids to 60L / h through the flowmeter, and pump the The two raw material liquids enter the impinging flow-rotating packed bed from the liquid distributor at the same time, and react in the supergravity field to obtain Fe 3 o 4 Magnetic nanoparticles, control the rotation speed of the hypergravity reactor to be 1000rpm. (2) Fe prepared by the above (1) 3 o 4 The suspension of magnetic nanoparticles is collected in a stirred tank, the pH value of the solution is adjuste...
Embodiment 2
[0025] A hypergravity preparation method for cysteine-modified magnetic nanomaterials, comprising the steps of:
[0026] (1) Mn(NO 3 ) 2 , Fe 2 (SO 4 ) 3 , according to the molar ratio of 1:1.5 to prepare a metal salt solution with a cation concentration of 0.05 mol / L; in addition, according to Fe 3+ and OH - The molar ratio is 1:8 to prepare ammonia solution; preheat the above metal salt mixed solution and lye to 25°C, adjust the volume flow rate of the two raw material liquids to 20L / h through the flowmeter, and pump the two kinds of raw materials respectively The raw material liquid enters the rotating packed bed from the liquid distributor at the same time, and reacts in the supergravity field to obtain MnFe 2 o 4 Magnetic nanoparticles, control the rotation speed of the hypergravity reactor to be 100rpm. (2) MnFe prepared by the above (1) 2 o 4 The suspension of magnetic nanoparticles is collected in a stirred tank, the pH value of the solution is adjusted to 4....
Embodiment 3
[0028] A hypergravity preparation method for cysteine-modified magnetic nanomaterials, comprising the steps of:
[0029] (1) Ni(PO 4 ) 2 , Fe(NO 3 ) 3 Prepare a metal salt solution with a cation concentration of 0.75 mol / L according to a molar ratio of 1:2; in addition, according to Fe 3+ and OH - The molar ratio is 1:4 to prepare sodium hydroxide aqueous solution; preheat the above metal salt mixed solution and lye to 40°C, adjust the volume flow rate of the two raw material solutions to 80L / h through the flow meter, and pump the The two raw material liquids enter the spiral channel type rotating bed from the liquid distributor at the same time, and react in the supergravity field to obtain NiFe 2 o 4 Magnetic nanoparticles, control the rotation speed of the hypergravity reactor to be 2500rpm. (2) NiFe prepared by the above (1) 2 o 4 The suspension of magnetic nanoparticles is collected in a stirred tank, the pH value of the solution is adjusted to 4.0~5.0, and an aq...
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