A kind of magnetic porous iron-zirconium bimetal composite coagulation aid and its preparation method and application
A porous iron, bimetallic technology, applied in chemical instruments and methods, flocculation/sedimentation water/sewage treatment, water/sludge/sewage treatment, etc., can solve the problem of low adsorption rate, poor fluoride ion adsorption capacity, secondary pollution and other problems, to achieve the effect of increasing the surface active group, the synthesis method and process being simple and easy to operate, and overcoming the difficulty of regeneration.
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Embodiment 1
[0029] A preparation method of a magnetic porous iron-zirconium bimetallic composite coagulant, comprising the following steps:
[0030] Step 1. Disperse zirconium sulfate and iron sulfate in 3:1 molar ratio (zirconium sulfate 28.34g, iron sulfate 13.33g) in 300mL pure water, stir and mix evenly to obtain a mixed solution;
[0031] Step 2, adding sodium hydroxide solution to the mixed solution to adjust the pH to 8.0 to obtain an iron / zirconium hydroxide mixed solution;
[0032] Step 3, stirring the iron / zirconium hydroxide mixed solution under hydrothermal conditions, adding 40 g of glacial acetic acid, and reacting in an oil bath at 80° C. for 2 hours to obtain an iron / zirconium oxide colloidal solution;
[0033] Step 4, putting the iron / zirconium oxide colloidal solution into a high-pressure reactor and heating at 180°C for 1 day, and cooling naturally after the reaction;
[0034] Step 5. The cooled reaction product is separated and extracted by centrifugation, dried at 60...
Embodiment 2
[0037] A preparation method of a magnetic porous iron-zirconium bimetallic composite coagulant, comprising the following steps:
[0038] Step 1. Disperse zirconium sulfate and iron sulfate in 250mL pure water at a molar ratio of 2:1 (zirconium sulfate 18.89g, iron sulfate 13.33g), stir and mix evenly to obtain a mixed solution;
[0039] Step 2, adding sodium hydroxide solution to the mixed solution to adjust the pH to 9.0 to obtain a mixed solution of iron / zirconium hydroxide;
[0040] Step 3. Stir the iron / zirconium hydroxide mixed solution under hydrothermal conditions, add 30 g of glacial acetic acid, and mature for 3 hours in an oil bath at 80° C. to obtain an iron / zirconium oxide colloidal solution;
[0041] Step 4, putting the iron / zirconium oxide colloidal solution into a high-pressure reactor and heating at 160°C for 1 day, and cooling naturally after the reaction;
[0042] Step 5. The cooled reaction product is separated and extracted by centrifugation, dried at 70° ...
Embodiment 3
[0045] A preparation method of a magnetic porous iron-zirconium bimetallic composite coagulant, comprising the following steps:
[0046] Step 1. Disperse zirconium sulfate and iron sulfate in 1:1 molar ratio (zirconium sulfate 9.45g, iron sulfate 13.33g) in 200mL pure water, stir and mix evenly to obtain a mixed solution;
[0047] Step 2, adding sodium hydroxide solution to the mixed solution to adjust the pH to 8.5 to obtain a mixed solution of iron / zirconium hydroxide;
[0048] Step 3. Stir the iron / zirconium hydroxide mixed solution under hydrothermal conditions, add 30 g of glacial acetic acid, and mature for 2 hours in an oil bath at 80° C. to obtain an iron / zirconium oxide colloidal solution;
[0049] Step 4, putting the iron / zirconium oxide colloidal solution into a high-pressure reactor and heating at 140°C for 2 days, and cooling naturally after the reaction;
[0050] Step 5. The cooled reaction product is separated and extracted by centrifugation, dried at 60° C., a...
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