Method and device for stripping, oxidizing and degrading high-concentration nitrobenzene-containing wastewater
A nitrobenzene wastewater, oxidative degradation technology, applied in chemical instruments and methods, water pollutants, water/sewage multi-stage treatment, etc., can solve the problem of high cost of high-concentration nitrobenzene wastewater, and improve the efficiency of ozone oxidation. , the effect of reducing the amount of production, and saving the processing cost
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Embodiment 1
[0029] Example 1: Utilization figure 1 The process shown is to treat wastewater containing nitrobenzene. The concentration of nitrobenzene in the wastewater is 600mg / L, and the pH is 6.8. The speed of the supergravity reactor is 700 rpm. The gas-liquid ratio of fresh air and wastewater in the supergravity equipment in the blow-off stage is 200 L / m 3 When the concentration of nitrobenzene in wastewater is reduced to 80 mg / L, the treatment time can be shortened by 80% compared with traditional stripping equipment, and the stripping efficiency will be significantly reduced afterwards. At this time, advanced ozone oxidation technology is used for advanced treatment, and H is added to the blown off wastewater 2 O 2 , Making H in the mixed liquid of the supergravity reactor 2 O 2 The concentration is 0.1 mmol / L, the ozone concentration is 10 mg / L, and the liquid-gas ratio of wastewater to ozone is 0.5 L / m 3 , The cyclic treatment is 15 min, the nitrobenzene content in the wastewate...
Embodiment 2
[0030] Example 2: Utilization figure 1 The process shown is to treat wastewater containing nitrobenzene. The concentration of nitrobenzene in the wastewater is 1000 mg / L, and the pH is 7.1. The speed of the high gravity reactor is 500 rpm. The gas-liquid ratio of fresh air and wastewater in the supergravity equipment in the blow-off stage is 400 L / m 3 When the concentration of nitrobenzene in wastewater is reduced to 100 mg / L, the treatment time can be shortened by 80% compared with traditional stripping equipment, and the stripping efficiency will be significantly reduced afterwards. Advanced ozone oxidation technology is used for advanced treatment, and H is added to the waste water after blowing off 2 O 2 , Making H in the mixed liquid of the supergravity reactor 2 O 2 The concentration is 1.0 mmol / L, the ozone concentration is 15 mg / L, and the liquid-gas ratio of wastewater to ozone is 1.0 L / m 3 , Cyclic treatment for 15 minutes, the content of nitrobenzene in the wastewa...
Embodiment 3
[0031] Example 3: Utilization figure 1 The process shown is to treat wastewater containing nitrobenzene. The concentration of nitrobenzene in the wastewater is 1500mg / L, and the pH is 6.8. The speed of the supergravity reactor is 300 rpm. The gas-liquid ratio of fresh air and wastewater in the supergravity equipment in the blow-off stage is 500 L / m 3 When the concentration of nitrobenzene in wastewater is reduced to 90 mg / L, the treatment time can be shortened by 80% compared with traditional stripping equipment, and the stripping efficiency will be significantly reduced afterwards. Advanced ozone oxidation technology is used for advanced treatment, and H is added to the waste water after blowing off 2 O 2 , Making H in the mixed liquid of the supergravity reactor 2 O 2 The concentration is 2.9 mmol / L, the ozone concentration is 30 mg / L, and the liquid-gas ratio of wastewater to ozone is 2.0 L / m 3 , Cyclic treatment for 15 minutes, the content of nitrobenzene in the wastewate...
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