A kind of process of rapidly starting microbial sulfate reduction
A fast-start, sulfate technology, applied in microorganism-based methods, microorganisms, separated microorganisms, etc., can solve the problems of long start-up cycle of microbial sulfate reduction process, difficulty in maintaining long-term stable treatment effect, and difficulty in forming granular sludge. Achieve stable and efficient processing performance, shorten start-up time, and improve tolerance
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Embodiment 1
[0018] 1) Rapid enrichment of sulfate-reducing bacteria: Add the surplus sludge from the sewage treatment plant to the expanded granular sludge bed reactor, and then feed the culture medium to keep the temperature of the expanded granular sludge bed reactor at 27±2 ℃, use liquid caustic soda to adjust the pH of the expanded granular sludge bed reactor to 5.67, fill the expanded granular sludge bed reactor with culture medium, stop the water inlet, turn on the internal circulation water pump, the internal circulation volume reflux ratio is 100%, and run After 5 days, sulfate-reducing bacteria were enriched in the expanded granular sludge bed reactor, and the relative abundance of bacteria reached 47.8%;
[0019] Wherein, the concentration of all components in the culture solution is: SO 4 2- 1500mg / L, NH 4 + 50mg / L, K 2 HPO 4 ·3H 2 O is 30mg / L, glycerin is 500mg / L, and trace element solution is 1ml / L, and all components in the trace element solution are: ZnCl of 750mg / L ...
Embodiment 2
[0027] 1) Rapid enrichment of sulfate-reducing bacteria: Add the surplus sludge from the sewage treatment plant to the expanded granular sludge bed reactor, and then feed the culture medium to keep the temperature of the expanded granular sludge bed reactor at 28±2 ℃, use liquid caustic soda to adjust the pH of the expanded granular sludge bed reactor to 5.5, fill the expanded granular sludge bed reactor with culture medium, stop the water inflow, turn on the internal circulation water pump, the reflux ratio of the internal circulation volume is 200%, and run After 4 days, sulfate-reducing bacteria were enriched in the expanded granular sludge bed reactor, and the relative abundance of bacteria reached 40.1%;
[0028] Wherein, the concentration of all components in the culture solution is: SO 4 2- 1500mg / L, NH 4 + 50mg / L, K 2 HPO 4 ·3H 2 O is 30mg / L, glycerin is 500mg / L, and trace element solution is 1ml / L, and all components in the trace element solution are: ZnCl of 750m...
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