Preparation method and application of magnetic hectorite composite polymer dye adsorbent for treating dye wastewater
A composite polymer and dye wastewater technology, which is applied in the preparation and application of magnetic hectorite composite polymer dye adsorbent for treating dye wastewater, can solve the problems of secondary pollution and difficult separation, and reduce investment cost, improved compatibility, and the effect of eliminating nitrogen installations
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Embodiment 1
[0032] 10gFeCl 3 ·6H 2 O and 5gFeCl 2 4H 2 O and 100mL of deionized water were added to the three-necked flask, stirred evenly, heated to 80°C after nitrogen protection for 30min, and then added dropwise 25g of ammonia solution with a mass concentration of 25-30%, and reacted at a constant temperature under nitrogen protection after the ammonia solution was added dropwise. 3h, cool down to room temperature, wash with deionized water for 4 times, and separate with a magnet to obtain magnetic nanoparticles; add 3g of magnetic nanoparticles, 8g of silane coupling agent KH570 and 150mL of deionized water into a three-necked flask and stir evenly. The temperature was raised to 80°C, and then 10 g of ammonia solution with a mass concentration of 25 to 30% was added dropwise, and the temperature was lowered to room temperature after 3 hours of constant temperature reaction under nitrogen protection, washed with deionized water for 3 times, and separated by a magnet to obtain KH570 ...
Embodiment 2
[0035] 15gFeCl 3 ·6H 2 O and 6gFeCl2 4H 2 O and 150mL deionized water were added to the three-necked flask, stirred evenly, heated to 50°C after nitrogen protection for 30min, and then added dropwise 35g of ammonia solution with a mass concentration of 25-30%. After the ammonia solution was added dropwise, nitrogen protection was used for constant temperature reaction 6h, cool down to room temperature, wash 5 times with deionized water, and separate with magnet to obtain magnetic nanoparticles; add 2.5g of magnetic nanoparticles, 5g of silane coupling agent KH570 and 100mL of deionized water into a three-necked flask and stir evenly, and protect with nitrogen for 30min Afterwards, the temperature was raised to 50° C., and then 6 g of ammonia solution with a mass concentration of 25 to 30% was added dropwise, cooled to room temperature after nitrogen protection constant temperature reaction for 6 hours, washed with deionized water for 5 times, and separated by a magnet to obta...
Embodiment 3
[0038] 20gFeCl 3 6H2O and 8gFeCl 2 4H 2 O and 200mL of deionized water were added to the three-necked flask, stirred evenly, heated up to 70°C after nitrogen protection for 30min, and then added dropwise 50g of ammonia solution with a mass concentration of 25-30%. 4h, cool down to room temperature, wash with deionized water for 4 times, and separate with magnet to obtain magnetic nanoparticles; add 4g of magnetic nanoparticles, 12g of silane coupling agent KH570 and 200mL of deionized water into a three-necked flask and stir evenly. The temperature was raised to 80°C, and then 12g of ammonia solution with a mass concentration of 25-30% was added dropwise, cooled to room temperature after 3 hours of constant temperature reaction under nitrogen protection, washed with deionized water 3 times, and separated by a magnet to obtain KH570 modified nano-magnetic particles.
[0039] Dissolve 8g NaOH in 200mL deionized water, slowly add 24g acrylic acid to the NaOH aqueous solution in...
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