A method for advanced treatment of pesticide wastewater
A technology for advanced treatment, pesticide wastewater, applied in natural water treatment, multi-stage water treatment, water/sewage treatment, etc., can solve problems such as unsatisfactory treatment effect of dissolved organic pollutants
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Embodiment 1
[0021] Dissolve 50 g of alum in 195 g of water, add 0.1 g of nonionic polyacrylamide and 100 g of powdered activated carbon (170 mesh) to the alum solution, stir at 200 r / min for 30 min at 50 ° C, add 45 g of silicon Sodium acid was stirred for 60 minutes, and then stood still for 2 hours to obtain the adsorption flocculant.
[0022] First use 10% dilute sulfuric acid to adjust the pH of the wastewater to 3, then add 100 mg / L potassium ferrate, stir for 2 minutes, let stand for 20 minutes, add 800 mg / L hydrogen peroxide in batches for oxidative degradation for 1 h, add 10 % calcium oxide suspension to adjust the pH to 8, then add 19.5 g of adsorption flocculant, stir for 2 min, and let stand for 20 min. COD Cr The removal rate is 92.1%, and the removal rate of ammonia nitrogen is 80.4%.
Embodiment 2
[0024] Dissolve 50 g of alum in 195 g of water, add 0.1 g of nonionic polyacrylamide and 100 g of powdered activated carbon (170 mesh) to the alum solution, stir at 200 r / min for 30 min at 50 ° C, add 45 g of silicon Sodium acid was stirred for 60 minutes, and then stood still for 3 hours to obtain the adsorption flocculant.
[0025] First use 10% dilute sulfuric acid to adjust the pH of the wastewater to 2, then add 80 mg / L potassium ferrate, stir for 2 minutes, let it stand for 20 minutes, and then add 20 mg / L ferrous sulfate heptahydrate and 800 mg / L in batches. L of hydrogen peroxide was oxidatively degraded for 1 h, 10% calcium oxide suspension was added to adjust the pH to 7, and then 26 g of adsorption flocculant was added, stirred for 2 min, and allowed to stand for 20 min. COD Cr The removal rate is 94.6%, and the removal rate of ammonia nitrogen is 82.5%.
Embodiment 3
[0027] Dissolve 50 g of alum in 195 g of water, add 0.1 g of nonionic polyacrylamide and 100 g of powdered activated carbon (200 mesh) to the alum solution, stir at 200 r / min for 30 min at 50 ° C, add 45 g of silicon Sodium acid was stirred for 60 minutes, and then stood still for 2 hours to obtain the adsorption flocculant.
[0028] First use 10% dilute sulfuric acid to adjust the pH of wastewater to 3, then add 100 mg / L potassium ferrate, stir for 2 min, let stand for 20 min, add 800 mg / L hydrogen peroxide in batches for oxidative degradation for 1 h, add 10% calcium oxide suspension was adjusted to pH 8, then 19.5 g of adsorption flocculant was added, stirred for 2 min, and allowed to stand for 20 min. COD Cr The removal rate is 93.4%, and the removal rate of ammonia nitrogen is 81.7%.
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