Method for removing residual tetracycline in pharmaceutical wastewater by using MnO2 supported graphene after flocculation
A pharmaceutical wastewater and graphene technology, applied in chemical instruments and methods, water pollutants, water/sewage treatment, etc., can solve the problems of large-scale application of cost constraints, large specific surface area, poor biodegradability, etc., and achieve excellent affinity Water-based, large specific surface area, and many adsorption sites
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Embodiment 1
[0020] Embodiment 1: a kind of utilization MnO 2 The method for loading graphene to remove residual tetracycline in pharmaceutical wastewater after flocculation is as follows: graphene and sodium hypochlorite solution with a mass concentration of 14% are fully mixed according to the ratio of 1kg:100L, stirred in a water bath at 50°C for 48h, and then reacted The mixture was washed with deionized water until the effluent was colorless, dried at 80°C for 24 hours to obtain pretreated graphene, 1kg of pretreated graphene was added to 100L deionized water and stirred for 2 hours, then 1.4kg of potassium permanganate was added to fully stir 5h, then reacted at 130°C for 24h, washed with deionized water until the effluent was colorless, and dried at 110°C for 12h to obtain MnO 2 Supported graphene. Add polyaluminum chloride 0.175g L respectively in pharmaceutical waste water -1 and polyferric sulfate 0.175g L -1 , speed 50r min -1 , the coagulation time is 50 min, and the settli...
Embodiment 2
[0021] Embodiment 2: a kind of utilization MnO 2 The method for loading graphene to remove residual tetracycline in pharmaceutical wastewater after flocculation is as follows: fully mix graphene and sodium hypochlorite solution with a mass concentration of 14% in a ratio of 1kg:110L, and stir in a water bath at 65°C for 48h. Subsequently, the reactant was washed with deionized water until the effluent was colorless, and dried at 80° C. for 24 hours to obtain pretreated graphene. Add 1kg of pretreated graphene to 100L deionized water and stir for 2 hours, then add 1.0kg of potassium permanganate and stir for 5 hours, then react at 150°C for 24h, wash with deionized water after reaction until the effluent is colorless, and dry at 110°C 12h, get MnO 2 Supported graphene. Add polyaluminum chloride 0.175g L respectively in pharmaceutical waste water -1 and polyferric sulfate 0.175g L -1 , speed 50r min -1 , the coagulation time is 100 min, and the settling time is 70 min to ob...
Embodiment 3
[0022] Embodiment 3: a kind of utilization MnO 2The method for loading graphene to remove residual tetracycline in pharmaceutical wastewater after flocculation is as follows: fully mix graphene and sodium hypochlorite solution with a mass concentration of 14% in a ratio of 1kg:120L, and stir in a water bath at 40°C for 48h. Subsequently, the reactant was washed with deionized water until the effluent was colorless, and dried at 80° C. for 24 hours to obtain pretreated graphene. Add 1kg of pretreated graphene to 100L deionized water and stir for 2 hours, then add 0.8kg of potassium permanganate and stir for 5 hours, then react at 120°C for 24h, wash with deionized water after reaction until the effluent is colorless, and dry at 110°C 12h, get MnO 2 Supported graphene. Add polyaluminum chloride 0.175g L respectively in pharmaceutical waste water -1 and polyferric sulfate 0.175g L -1 , speed 50r min -1 , the coagulation time is 60 min, and the settling time is 60 min to obta...
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