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  • Powdered sewage treatment of salt-resistant bacteria
  • Powdered sewage treatment of salt-resistant bacteria
  • Powdered sewage treatment of salt-resistant bacteria
  • Powdered sewage treatment of salt-resistant bacteria
Powdered sewage treatment of salt-resistant bacteriaPowdered sewage treatment of salt-resistant bacteriaPowdered sewage treatment of salt-resistant bacteriaPowdered sewage treatment of salt-resistant bacteria

Powdered sewage treatment of salt-resistant bacteria

  • Category: Salt Tolerant Bacteria
  • Product State: Solid powder
  • High-salt resistance: Applicable to all kinds of high-salt sewage.
  • Highly active flora: 20 billion living bacteria degrade continuously and the effect is lasting.
  • High removal rate: The removal rate >98%.
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Product Description:
Main component: A variety of salt-resistant bacillus, effective viable bacteria number ≥10 billion grams;
Product State:Solid powder;
Scope of application: all kinds of high salt sewage, such as mustard wastewater, chemical raw material wastewater, chemical synthetic wastewater;
Product efficacy: Stronger COD removal ability: a variety of bacterial agents contained in the product are screened from different polluted environments, which can effectively strengthen the aerobic sewage treatment system and quickly remove COD; Its COD removal capacity was significantly better than that of similar products containing only one microorganism;
Precautions: Do not use disinfectants, antibacterial drugs and strong oxidants when using the bacterial agent; Avoid contact with eyes or inhalation.

The influence of high salinity on biochemical treatment is mainly reflected in the following aspects:
1. With the increase of salinity, the growth of activated sludge is affected. The changes of the growth curve were as follows: the adaptation period became longer; In the logarithmic growth period, the growth rate becomes slower; The deceleration period lasts longer.
2. Salinity enhances the respiration of microorganisms and the cytolytic action of cells.
3. Salinity reduces the biodegradability and degradability of organic matter. The removal rate and degradation rate of organic matter decreased.
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