A biochemical treatment reactor for wastewater containing quinolone antibiotics
An antibiotic wastewater, quinolone technology, applied in biological water/sewage treatment, water/sewage multi-stage treatment, water/sludge/sewage treatment, etc., can solve the problem of ineffective degradation of quinolone antibiotics, etc. Separator, the effect of overcoming serious mud running and good separation effect
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[0014] First, domestic sewage is connected to the reactor. After the two reactors are simultaneously stuffy for several days, stop the aeration system of the CAF reactor and switch to anaerobic operation for several days. Observe the film formation of the biological filler. After successful film formation , pump a certain concentration of wastewater prepared in the laboratory (gradually increasing the load) into the reactor, first pass through the CAF and then through the FBBR, continuously detect the COD value of the influent and effluent, and constantly adjust the parameters of the reactor during the experiment to achieve the best Good removal effect.
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[0016] In this embodiment, the experiment is carried out by using high-concentration wastewater containing quinolones prepared in the laboratory. The raw water quality is: 300-400mg / L for quinolones, equivalent to 600-800mg / l for CODcr. The water sample is pumped into the CAF reactor through the water pump. After the wastewater stays for 24 hours, it flows into the FBBR aerobic reactor by itself, and is discharged after staying for 24 hours. The CODcr of the inflow and outflow water is detected. After the reactor runs stably, the removal rate can be stabilized at 70- About 75%. The biofilm grows well, and the microscopic examination of the biofilm reveals that there are many kinds of microorganisms with good activity.
[0017] Description of English abbreviations:
[0018] CODcr: chemical oxygen demand
[0019] CAF: Composite Anaerobic Reactor
[0020] FBBR: Fixed Membrane Bioreactor
[0021] HRT: hydraulic retention time
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