Sewage treatment method for coping with industrial wastewater impact in municipal wastewater plant
A sewage treatment method and technology for industrial wastewater, applied in biological water/sewage treatment, water/sludge/sewage treatment, aerobic and anaerobic process treatment, etc. Reduced capacity, no mention of system recovery, etc., to achieve the effect of reducing system load and toxic effects, achieving rapid proliferation, restoring activity and processing capacity
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Embodiment 1
[0040] The COD of the influent water of an urban sewage plant is 200mg / L, the water volume is 10,000 tons / d, the hydraulic retention time is 10 hours, and the normal working load of the influent water of the biochemical tank is 0.48kg / m 3 ·d, the sludge age is 10d, and the effluent COD is 30mg / L, meeting the national first-class A discharge standard. For a certain period of time, the influent of a certain industrial wastewater into the plant is all refractory organic matter. After the industrial wastewater enters, the COD load of the influent in the biochemical tank increases to 1.20kg / m2 3 d, increased by 150%, the COD of the influent is 500mg / L, and the COD of the effluent is increased from 30mg / L to 260mg / L, which does not meet the national level A emission standard. The following methods were used for treatment: 1. Add 80 mg / L of carbon source (24, 32, and 24 mg / L of glucose, starch, and methanol, respectively), to extend the sludge age to 18 days, which was extended by 80...
Embodiment 2
[0042] The difference between this example and Example 1 is that when the COD load of the biochemical pool influent is increased by 5% (to 0.504CODkg / m 3 ·d), the COD of the influent is 210mg / L, and the COD of the effluent rises to 62mg / L. Adjust as follows: add carbon source 6mg / L (according to the ratio of glucose:starch:methanol=3:4:3), the sludge age is extended to 11d, which is extended by 10%; in the anoxic tank of the biochemical tank / or The carbon source that accounts for 30%-50% of the total mass of the added carbon source is put into the anoxic section; the balance of the added carbon source is put into the aerobic pool / or aerobic section of the biochemical pool. After applying the above method, the effluent decreased from 62mg / L to 36mg / L within 3 days, and the removal rate was 83%, reaching the national first-class A discharge standard.
Embodiment 3
[0044] The difference between this example and Example 1 is that when the COD load of the biochemical pool influent is increased by 10% (to 0.528kgCOD / m 3 ·d), the COD of the influent is 220mg / L, and the COD of the effluent rises to 85mg / L. Adjust as follows: add 10mg / L of carbon source (according to the ratio of glucose:starch:methanol=2:4:4), the sludge age is extended to 11.5d, an increase of 15%; Or the carbon source that accounts for 30%-50% of the total mass of the added carbon source is put into the anoxic section, and the balance of the added carbon source is added to the aerobic pool / aerobic section of the biochemical pool; The dosage of aluminum is 30mg / L, and the dosage method is to add 30%-50% of the total mass added in the anoxic tank / or anoxic section of the biochemical tank, and the remainder is added to the aerobic tank of the biochemical tank. In the tank / or aerobic section; 15% of the total mass of the effluent of the biochemical tank will be returned to the...
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