Preparation method and use of compound immobilized biological carrier
A biological carrier and application technology, applied in the field of preparation of composite immobilized biological carriers, can solve problems such as easy loss, limited sewage treatment capacity, difficult settlement, etc., and achieve the effects of convenient production, increased removal effect, and high treatment efficiency
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Embodiment 1
[0023] Add 100g polyether, 50g toluene diisocyanate, 3.1g polyisocyanate, 4g attapulgite, 0.45g silicon dioxide, 0.25g tertiary amine, 0.14g alkyltin oxide, 2.0g water, 4.5g dichloromethane to the biochemical In the reaction kettle, stir evenly at room temperature, react, foam and form, and pulverize to obtain polyurethane foam particles with a particle size of 3 to 4 cm.
[0024] Stir and mix 1g of polyurethane foam particles and 9g of dry sponge iron particles with a particle size of 3 to 4cm, and then add them to the extruder. After melting, the sponge iron particles and polyurethane foam particles are fully mixed, extruded, and cut to form a Polyurethane foam particles with sponge iron particles; then fill the polyurethane foam particles containing sponge iron particles into the upper and lower hemispheres with a diameter of 100mm and a porosity of 99% made of polypropylene, and then fasten the two hemispheres superior.
[0025] Finally, put the closed sphere into activat...
Embodiment 2
[0027] Stir and mix 1g of polyurethane foam particles and 31g of dry sponge iron particles with a particle size of 3 to 4cm in Example 1, then add them to the extruder, melt the sponge iron particles and polyurethane foam particles to fully mix, and extrude , cut off to form the polyurethane foam particles containing the sponge iron particles; then the polyurethane foam particles containing the sponge iron particles are filled in the upper and lower hemispheres with a diameter of 100 mm and a porosity of 99% made of polypropylene, and then the The two hemispheres are snapped together.
[0028] Finally, put the closed sphere into activated sludge with a pH value of 8, and after 2 hours of domestication reaction, take out the sphere, wash and dry it to obtain a density of 1.8g / cm 3 Composite immobilized biological carrier materials.
Embodiment 3
[0030] Stir and mix 1 g of polyurethane foam particles and 21 g of dry sponge iron particles with a particle size of 3 to 4 cm in Example 1, then add them to the extruder, and melt the sponge iron particles and polyurethane foam particles to fully mix, extrude , cut off to form the polyurethane foam particles containing the sponge iron particles; then the polyurethane foam particles containing the sponge iron particles are filled in the upper and lower hemispheres with a diameter of 100 mm and a porosity of 99% made of polypropylene, and then the The two hemispheres are snapped together.
[0031] Finally, put the closed sphere into activated sludge with a pH value of 7.5, and after 3.5 hours of domestication reaction, take out the sphere, wash and dry it to obtain a density of 2.0g / cm 3 Composite immobilized biological carrier.
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