A kind of environment-friendly river and lake water treatment composition and preparation method thereof
A composition and environment-friendly technology, applied in water/sewage treatment, adsorption water/sewage treatment, water/sludge/sewage treatment, etc., can solve the problems of increased treatment difficulty, short use time, secondary pollution, etc., to achieve Suitable for popularization and use, improving effects and reducing preparation costs
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Embodiment 1
[0026] 100 parts of ferric oxide and 30 parts of metal actives (mixture of manganese, sodium and lanthanum) were weighed, mixed uniformly, and calcined at 1300° C. for 8 hours to obtain the first composition. 100 parts of polyethylene and 70 parts of graft-modified polyolefin were weighed and mixed uniformly, then calcined at 400°C for 3 hours, then cooled to 90°C, and 5 parts of 2,2'-methylenebis-( After fully mixing 4,6-di-tert-butylphenyl)aluminum phosphate and 20 parts of oxalic acid, the reaction was continued for 50 min to obtain the second composition. Select the flake-like solid material natural mica with a thickness of 400 μm as the matrix, and combine 100 parts of the first composition, 100 parts of the second composition, 70 parts of epoxy resin and triazine light stabilizer obtained above After 30 parts of UV-630 is mixed and stirred evenly, it is applied to the surface of the substrate. After drying, it is placed in a drying oven at 50° C. to dry overnight, and t...
Embodiment 2
[0028] 100 parts of alumina and 10 parts of metal actives (a mixture of manganese, magnesium, sodium, and lanthanum) were weighed, mixed uniformly, and calcined at 1300° C. for 8 hours to obtain the first composition. 100 parts of polyethylene and 100 parts of graft-modified polyolefin were weighed and mixed uniformly, then calcined at 400°C for 3 hours, then cooled to 90°C, and 5 parts of 2,2'-methylenebis-( After fully mixing 4,6-di-tert-butylphenyl)aluminum phosphate and 15 parts of oxalic acid, the reaction was continued for 50 min to obtain the second composition. A flake-shaped solid material glass flake with a thickness of 600 μm is selected as a matrix, and 100 parts of the first composition obtained above, 100 parts of the second composition, 50 parts of phenolic resin and hindered amine light stabilizer are used. After mixing and stirring 50 parts of UV-325 evenly, apply it to the surface of the substrate. After drying, place it in a drying oven at 50° C. to dry ove...
Embodiment 3
[0030] 100 parts of ferric tetroxide and 50 parts of metal actives (a mixture of manganese, lithium, magnesium, beryllium, lanthanum, and cerium) are weighed, mixed uniformly, and calcined at 1300° C. for 8 hours to obtain the first composition. 100 parts of polypropylene and 50 parts of graft-modified polyolefin were weighed and mixed uniformly, then calcined at 400°C for 3 hours, then cooled to 90°C, and 5 parts of 2,2'-methylenebis-( After fully mixing 4,6-di-tert-butylphenyl)aluminum phosphate and 10 parts of humic acid, the reaction was continued for 50 min to obtain the second composition. A flake-shaped solid material silica flake with a thickness of 200 μm is selected as the matrix, and 100 parts of the first composition obtained above, 100 parts of the second composition, 50 parts of epoxy resin and triazine light stabilizer 10 parts of UV-630 were mixed and stirred evenly, and then applied to the surface of the substrate. After drying, it was placed in a drying oven...
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