A crown ether-based flocculant for papermaking wastewater treatment and preparation method thereof
A technology for papermaking wastewater and flocculant, which is applied in the process of wastewater treatment, flocculation/sedimentation water/sewage treatment, etc., can solve the problems of low flocculation and sedimentation efficiency, secondary pollution, and high drug consumption, and achieves low equipment dependence. , The use of safe and environmental protection, the effect of easy access to raw materials
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Embodiment 1
[0032] A method for preparing a flocculant for papermaking wastewater treatment based on crown ether, comprising the steps of:
[0033] Preparation of S1 polymerized betaine: In a three-neck flask equipped with a stirrer, a thermometer, and a constant pressure dropping funnel, add 10 g of 3-trimethoxysilane propyl acrylate, 23.5 g of betaine, 100 g of dichloromethane, and 1g of cuprous metal and 3g of dibutyltin dilaurate, raising the temperature to 85°C, then adding 4g of distilled water dropwise, stirring and reacting at 95°C for 8 hours, then layering, and then rotary evaporation to remove the solvent to obtain polymerized betaine;
[0034] S2 Preparation of crown ether-based acrylamide copolymers: 10 g of polymerized betaine, 4-vinylbenzo-18-crown ether-610 g, 20 g of acrylamide, N-trimethylolform Dissolve 10 g of acrylamide and 1 g of azobisisobutyronitrile in 150 g of dimethyl sulfoxide, stir and react at 65 °C for 4 hours under a nitrogen atmosphere, then precipitate in...
Embodiment 2
[0039] A method for preparing a flocculant for papermaking wastewater treatment based on crown ether, comprising the steps of:
[0040] Preparation of S1 polymerized betaine: In a three-neck flask equipped with a stirrer, a thermometer, and a constant pressure dropping funnel, add 10 g of 3-trimethoxysilane propyl acrylate, 23.5 g of betaine, 110 g of acetonitrile, and ferric chloride 1.3g and 3g of dibutyltin dilaurate, raise the temperature to 87°C, add 4g of distilled water dropwise, stir and react at 96°C for 8.5 hours, then separate layers, and then spin evaporate to remove the solvent to obtain polymerized betaine;
[0041] S2 Preparation of crown ether-based acrylamide copolymers: 10 g of polymerized betaine, 4-vinylbenzo-18-crown ether-610 g, 20 g of acrylamide, N-trimethylolform Dissolve 10g of acrylamide and 1.5g of azobisisobutyronitrile in 162g of N,N-dimethylformamide, stir and react at 67°C for 4.5 hours under a helium atmosphere, then precipitate in acetone, fil...
Embodiment 3
[0046] A method for preparing a flocculant for papermaking wastewater treatment based on crown ether, comprising the steps of:
[0047] Preparation of S1 polymerized betaine: In a three-neck flask equipped with a stirrer, a thermometer, and a constant pressure dropping funnel, add 10 g of 3-trimethoxysilane propyl acrylate, 23.5 g of betaine, 135 g of acetone, and 1.5 g of sodium sulfate and 3g of dibutyltin dilaurate, raise the temperature to 89°C, add dropwise 4g of distilled water, stir and react at 97°C for 9 hours, then separate layers, and then spin evaporate to remove the solvent to obtain polymerized betaine;
[0048] S2 Preparation of crown ether-based acrylamide copolymers: 10 g of polymerized betaine, 4-vinylbenzo-18-crown ether-610 g, 20 g of acrylamide, N-trimethylolform Dissolve 10g of acrylamide and 2g of azobisisobutyronitrile in 175g of N-methylpyrrolidone, stir and react at 69°C for 5 hours under a neon atmosphere, then precipitate in acetone, filter with suc...
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