Amphiphilic high-temperature-resistant silicon-based fiber plugging agent and preparation method thereof
A plugging agent and high-temperature-resistant technology, which is applied in fiber treatment, chemical instruments and methods, textiles and papermaking, etc., can solve problems such as insufficient temperature resistance of the plugging agent, affect the plugging effect, and fail to achieve the ideal effect, etc., to achieve Good plugging and anti-seepage effects, simple and easy-to-control production process, and good application prospects
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Embodiment 1
[0026] (1) Silicon-based fiber preparation: Tetraethyl silicate 700g, calcium carbonate 150g, polyethylene glycol 150g, mix uniformly in a kneader; add distilled water, stir quickly, and adjust to a viscosity of 500mPa·s; pass the solution The spinneret hole is sprayed into the coagulation bath of NaOH aqueous solution with a concentration of 1.0mol / L, and the temperature of the coagulation bath is controlled at 70°C to hydrolyze and polymerize the tetraethyl orthosilicate in the prepolymer solution, and solidify and form;
[0027] (2) Surface modification of silicon-based fibers: Disperse 500 g of silicon-based fibers prepared in the above steps in 1000 mL of distilled water, add 100 g of β-cyclodextrin, stir rapidly to dissolve them completely; heat up to 50°C, add 50mL of oxalic acid and 5mL of sulfuric acid were incubated for 6 hours, then filtered, and the obtained fiber was washed twice with distilled water to obtain an amphiphilic high-temperature resistant silicon-based...
Embodiment 2
[0029] (1) Preparation of silicon-based fiber: tetraethyl orthosilicate 600g, calcium carbonate 100g, polyethylene glycol 150g, methyl cellulose 150g, mix homogeneously in kneader; Add distilled water, stir rapidly, be adjusted to viscosity and be 4000mPa. s; the solution is sprayed into the coagulation bath of NaOH aqueous solution with a concentration of 0.8mol / L through the spinneret hole, and the temperature of the coagulation bath is controlled at 75°C to hydrolyze and polymerize tetraethyl orthosilicate in the prepolymer solution, and coagulate and form ;
[0030] (2) Surface modification of silicon-based fibers: Disperse 500 g of silicon-based fibers prepared in the above steps in 1000 mL of distilled water, add 150 g of α-cyclodextrin, stir rapidly to dissolve them completely; raise the temperature to 50°C, and add 60mL of oxalic acid and 6mL of sulfuric acid were incubated for 6 hours, then filtered, and the obtained fiber was washed twice with distilled water to obta...
Embodiment 3
[0032] (1) Preparation of silicon-based fibers: 800 g of tetraethyl orthosilicate, 100 g of polyvinyl alcohol, and 100 g of methyl cellulose are uniformly mixed in a kneader; distilled water is added, stirred rapidly, and adjusted to a viscosity of 8000 mPa·s; the solution Spray into the coagulation bath of NaOH aqueous solution with a concentration of 0.8mol / L through the spinneret hole, the temperature of the coagulation bath is controlled at 60°C, so that the tetraethyl orthosilicate in the prepolymer solution is hydrolyzed and polymerized, and coagulated into shape;
[0033] (2) Surface modification of silicon-based fibers: Disperse 500 g of silicon-based fibers prepared in the above steps in 1000 mL of distilled water, add 200 g of α-cyclodextrin, stir rapidly to dissolve them completely; raise the temperature to 60°C, add 80mL oxalic acid and 10mL sulfuric acid were incubated for 6 hours, then filtered, and the obtained fiber was washed twice with distilled water to obtai...
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