Method for simultaneously recovering phosphorus and removing antibiotics in water body based on sludge-based biochar
A technology of antibiotics and biochar, applied in chemical instruments and methods, water/sludge/sewage treatment, water pollutants, etc., can solve the problem that phosphorus recovery products are easily contaminated by antibiotics, and solve the problem of sludge treatment and disposal, The effect of high-efficiency catalytic degradation performance and excellent adsorption performance
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Embodiment 1
[0016] Put the plate and frame filter sludge (moisture content 40%, organic matter content 35%, iron element content 4%, magnesium element content 2%, aluminum element content 5%) of urban sewage treatment plant into a porcelain crucible, cover it Placed in a muffle furnace, after 400 oC Calcined at high temperature for 2 hours and then naturally lowered to room temperature to obtain MBC air -400.
[0017] 30 mg MBC air -400 was added to 30 mL of composite polluted wastewater containing 5-200 mg / L phosphorus and 20 µg / L tetracycline, and 0.1 mM oxidant PMS was added at the same time to conduct simultaneous phosphorus adsorption and antibiotic degradation experiments. The results of the study showed that MBC air The adsorption capacity of -400 for phosphorus is 30 mg / g, and the removal rate of antibiotics is over 99%.
Embodiment 2
[0019] Put the plate and frame filter press sludge (moisture content 60%, organic matter content 55%, iron element content 8%, magnesium element content 0.4%, aluminum element content 0.2%) of the papermaking sewage treatment plant in a porcelain boat, and put it in a tube In the furnace, under nitrogen atmosphere, after 800 oC Calcined at high temperature for 2 hours and then naturally lowered to room temperature to obtain PBC N2 -800.
[0020] 30 mg PBC N2 -800 was added to 300 mL of composite polluted wastewater containing 5-200 mg / L phosphorus and 1000 µg / L sulfamethazine, and 1 mM oxidant PMS was added at the same time to conduct simultaneous phosphorus adsorption and antibiotic degradation experiments. The results of the study showed that PBC N2 The adsorption capacity of -800 for phosphorus is 85 mg / g, and the removal rate of antibiotics is over 99%.
Embodiment 3
[0022] Put the sludge discharged from the sewage treatment plant in the industrial park (water content 50%, organic matter content 45%, iron element content 10%, magnesium element content 1%, aluminum element content 0.5%) in a porcelain boat, placed in a tubular In the furnace, under vacuum conditions after 600 oC Calcined at high temperature for 2 hours and then naturally lowered to room temperature to obtain IBC vac -600.
[0023] 30 mg IBC vac -600 was added to 60 mL of composite polluted wastewater containing 5-200 mg / L phosphorus and 500 µg / L ciprofloxacin, and 0.5 mM oxidant H 2 o 2 , for simultaneous phosphorus adsorption and antibiotic degradation experiments. The results of the study showed that IBC vacThe adsorption capacity of -600 for phosphorus is 12 mg / g, and the removal rate of antibiotics is above 99%.
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