Method for removing heavy metal cadmium in shellfish enzymatic hydrolysate
A technology for enzymatic hydrolysis and heavy metals, applied in alkali metal compounds, chemical instruments and methods, alkali metal oxides/hydroxides, etc., can solve problems such as difficult separation, poor adsorption effect, narrow pH range, etc., and achieve operational Convenience, cadmium removal effect and high removal efficiency
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Embodiment 1
[0038] (1) Preparation of Fe 3 o 4 magnetic nanoparticles
[0039] FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 Dissolve in deionized water to obtain a mixed solution, FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 The molar ratio is 2:1; add excess ammonia water dropwise to the mixed solution to maintain the pH at 10 to form a black precipitate. Under stirring conditions, heat in a water bath at 80°C for 30 minutes, separate the black precipitate with an external magnetic field, and wash it with deionized water until The pH is neutral and dried in vacuum to obtain Fe 3 o 4 Magnetic nanoparticles, ready to use.
[0040] (2) Preparation of SiO 2 Core-shell magnetic microspheres
[0041] Take 0.4g Fe 3 o 4 After pretreatment, the magnetic nanoparticles were added to the mixed solution of ethanol and water. The mass ratio of ethanol to water in the mixed solution was 4:1. After ultrasonic dispersion, 0.18mL tetraethyl orthosilicate and 0.9mL absolute ethanol were slowly ...
Embodiment 2
[0055] (1) Preparation of Fe 3 o 4 magnetic nanoparticles
[0056] FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 Dissolve in deionized water to obtain a mixed solution, FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 The molar ratio is 2:1; add excess ammonia water dropwise to the mixed solution to maintain the pH at 10 to form a black precipitate. Under stirring conditions, heat in a water bath at 85°C for 25 minutes, separate the black precipitate with an external magnetic field, and wash it with deionized water until The pH is neutral and dried in vacuum to obtain Fe 3 o 4Magnetic nanoparticles, ready to use.
[0057] (2) Preparation of SiO 2 Core-shell magnetic microspheres
[0058] Take 0.5g Fe 3 o 4 After pretreatment, the magnetic nanoparticles were added to the mixed solution of ethanol and water. The mass ratio of ethanol to water in the mixed solution was 5:1. After ultrasonic dispersion, 0.2mL tetraethyl orthosilicate and 1.1mL absolute ethanol were slowly ad...
Embodiment 3
[0072] (1) Preparation of Fe 3 o 4 magnetic nanoparticles
[0073] FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 Dissolve in deionized water to obtain a mixed solution, FeCl 3 ·6H 2 O and Fe(NH 4 ) 2 (SO 4 ) 2 The molar ratio is 2:1; add excess ammonia water dropwise to the mixed solution to maintain the pH at 10 to form a black precipitate. Under stirring conditions, heat in a water bath at 82°C for 28 minutes, separate the black precipitate with an external magnetic field, and wash it with deionized water until The pH is neutral and dried in vacuum to obtain Fe 3 o 4 Magnetic nanoparticles, ready to use.
[0074] (2) Preparation of SiO 2 Core-shell magnetic microspheres
[0075] Take 0.45g Fe 3 o 4 After pretreatment, the magnetic nanoparticles were added to the mixed solution of ethanol and water. The mass ratio of ethanol to water in the mixed solution was 4.5:1. After ultrasonic dispersion, 0.19mL tetraethyl orthosilicate and 1.0mL absolute ethanol were slow...
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