Method for deeply treating wastewater containing ammonia nitrogen
A technology for the advanced treatment of ammonia nitrogen wastewater, applied in the direction of sustainable biological treatment, chemical instruments and methods, biological water/sewage treatment, etc., can solve the problems of reduced biofilm adhesion, long film-hanging time, and system instability, etc., to achieve Stable effect, strong anti-ammonia nitrogen impact load capacity, and large biological immobilization capacity
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Embodiment 1
[0024] Put zeolite and volcanic filter stone at a volume ratio of 1:2 at 300m 3 The filter material layer is formed in the filter tank, the diameter of zeolite is 5~16mm, and the zeolite and volcanic filter stone are layered and filled; the biochemical secondary effluent containing ammonia nitrogen is introduced into the filter tank; 6kg of nitrifying bacteria are put into the filter tank for biochemical reaction 12 hours; discharge the waste water after the biochemical reaction.
Embodiment 2
[0026] Put zeolite and granular activated carbon in a volume ratio of 1:1 at 150m 3 The filter material layer is formed in the filter tank, the diameter of zeolite is 5~16mm, and the zeolite and granular activated carbon are mixed and filled; the waste water containing low COD ammonia nitrogen is introduced into the filter tank; 6kg of nitrifying bacteria and 0.45m 3 The activated sludge is put into the filter tank, and the biochemical reaction is carried out for 24 hours; the waste water after the biochemical reaction is discharged.
Embodiment 3
[0028] Put zeolite and ceramsite at a volume ratio of 2:1 at 400m 3 The filter material layer is formed in the filter tank, the diameter of zeolite is 5~16mm, and the zeolite and ceramsite are mixed and filled; the biochemical secondary effluent containing ammonia nitrogen is introduced into the filter tank; 8kg of nitrifying bacteria are put into the filter tank, and the biochemical reaction is carried out for 36 hours ; Discharge the waste water after the biochemical reaction.
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