Electrophilic suspended bio-carrier and preparation method thereof
A biological carrier and electrical function technology, applied in the field of biological treatment of pollutants, can solve the problems of poor reactor operation and treatment effect, slow speed of biological carrier film formation, low ammonia nitrogen removal efficiency, etc., to achieve enhanced nitrification-denitrification Functional effect, shortening the film-hanging cycle, and convenient processing
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Embodiment 1
[0025] Take 25 kg of polyethylene, 1 kg of polyaniline with a fineness of more than 100 mesh, 1 kg of neutral alumina and diatomaceous earth, 2 kg of calcium carbonate and 1 kg of ferric oxide, and add the above raw materials to the mixer and mix evenly ; put it in the granulator and process it into granules at a temperature of 150°C; put the granules into the screw extruder, and the temperature of each section is 130°C, 140°C, 150°C, 130°C (head), and extrude Make a cylindrical tube, and finally make the biological carrier of the present invention through cooling, cutting and shaping, and its density is 0.93g / cm 3 . The biological carrier prepared in this example was tested for solid surface Zeta potential. The test results showed that when the electrolyte was neutral, the surface Zeta potential of the biological carrier was +22mV, indicating that the surface of the biological carrier was positively charged.
Embodiment 2
[0027] Take 10 kg of polypropylene, 0.5 kg of cationic polyacrylamide with a fineness above 100 mesh, 0.2 kg of polyvinyl alcohol, 0.2 kg of neutral alumina, 0.2 kg of talcum powder and 0.1 kg of ferric oxide, add the above raw materials and mix The machine is mixed evenly; placed in the granulator and processed into granules at a temperature of 150°C; the granules are added to the screw extruder, and the temperature of each section is 130°C, 140°C, 150°C, 130°C (machine head) , extruded into a cylindrical tube, and finally cooled, cut and shaped to make the biological carrier of the present invention, its density is 0.95g / cm 3 . The prepared electrophilic biological carrier and polypropylene biological carrier of the same shape and quantity were added to the urban sewage aerobic biological treatment system, and the rapid sludge discharge method was used to conduct a film-hanging comparison experiment. The experimental results show that the time required for the electrophilic...
Embodiment 3
[0029] Take 23 kg of polyethylene, 0.7 kg each of cationic polyacrylamide and polyaniline with a fineness above 100 mesh, 1.3 kg each of activated carbon and diatomaceous earth, 0.4 kg of talcum powder and 0.1 kg of ferric oxide, add the above raw materials and mix The machine is mixed evenly; placed in the granulator and processed into granules at a temperature of 150°C; the granules are added to the screw extruder, and the temperature of each section is 130°C, 140°C, 150°C, 130°C (machine head) , extruded into a cylindrical tube, and finally cooled, cut and shaped to make the biological carrier of the present invention, its density is 0.91g / cm 3 . The biological carrier prepared in this example was subjected to a biodegradation experiment simulating urban sewage, and the experimental results showed that the removal rates of COD and ammonia nitrogen all reached more than 95%, indicating that the electrophilic biological carrier prepared by the present invention has a good sew...
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