A kind of nano fe(oh)3 composite biological filler, preparation method and application thereof
A biofiller and nano-composite technology, which is applied in the field of nano-Fe3 composite biofiller, high-stability microbial water treatment active carrier, preparation, and high activity. It is cumbersome and difficult to guarantee the properties of nano-polyurethane materials, so as to avoid toxic effects, improve stability and biological activity, and reduce the difficulty of preparation
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0040] (1) Prepare polyurethane prepolymer by reacting 2.4 parts of MDI, 1 part of 1,4-butanediol and 5 parts of acetone at 80°C for 2.5 hours by volume;
[0041] (2) 0.2 parts of isoamyl alcohol, 8 parts of cyclopentane, 0.1 part of 0.05mol / L FeCl by volume 3 The solution is mixed with 0.1 part of 0.2mol / L ammonia solution;
[0042] (3) Mix the above-mentioned 1 part of polyurethane prepolymer with the mixed solution obtained in step (2), first mix and react under ultrasonic vibration for 1.5 hours, then continue to react for 0.5 hours under mechanical stirring (stirring speed is lower than 10rpm), and then Concentrate the mixed solution by evaporation at a temperature of 60°C to obtain Fe(OH) 3 Nanocomposite polyurethane prepolymer;
[0043] (4) Mix 40 parts of MDI, 50 parts of ethylene glycol, 0.2 parts of dibutyl dilaurate and 1 part of Fe(OH) by volume 3 Nano-composite polyurethane prepolymer mixed to complete polyurethane foam to prepare nano-Fe(OH) 3 Composite biolo...
Embodiment 2
[0045] (1) Prepare polyurethane prepolymer by reacting 2.3 parts of MDI, 1 part of ethylene glycol and 5 parts of acetone at 85°C for 3.5 hours by volume;
[0046] (2) 0.5 parts of n-butanol, 12 parts of cyclopentane, 0.1 part of 0.05mol / L FeCl by volume 3 The solution is mixed with 0.1 part of 0.2mol / L ammonia solution;
[0047] (3) Mix the above-mentioned 1 part of polyurethane prepolymer with the mixed solution obtained in step (2), first mix and react under ultrasonic vibration for 2 hours, then continue to react for 1 hour under mechanical stirring (stirring speed is lower than 10rpm), and then Concentrate the mixed solution by evaporation at a temperature of 75°C to obtain Fe(OH) 3 Nanocomposite polyurethane prepolymer;
[0048] (4) Mix 40 parts of TDI, 30 parts of ethylene glycol, 0.2 parts of dibutyl dilaurate and 1 part of Fe(OH) by volume 3 Nano-composite polyurethane prepolymer mixed to complete polyurethane foam to prepare nano-Fe(OH) 3 Composite biological fil...
Embodiment 3
[0050] (1) Prepare polyurethane prepolymer by reacting 2.2 parts of MDI, 1 part of 1,4-butanediol and 5 parts of cyclopentanone at 80°C for 2.5 hours by volume;
[0051] (2) 0.5 parts of n-hexanol, 12 parts of cyclopentane, 0.1 part of 0.05mol / L FeCl by volume 3 The solution is mixed with 0.1 part of 0.2mol / L ammonia solution;
[0052] (3) Mix the above-mentioned 1 part of polyurethane prepolymer with the mixed solution obtained in step (1), first mix and react under ultrasonic vibration for 1.5 hours, then continue to react for 0.5 hours under mechanical stirring (stirring speed is lower than 10rpm), and then Concentrate the mixed solution by evaporation at a temperature of 60°C to obtain Fe(OH) 3 Nanocomposite polyurethane prepolymer;
[0053] (4) Mix 50 parts of MDI, 50 parts of ethylene glycol, 0.2 parts of dibutyl dilaurate and 1 part of Fe(OH) by volume 3 Nano-composite polyurethane prepolymer mixed to complete polyurethane foam to prepare nano-Fe(OH) 3 Composite bio...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More