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Brand Name : Lanyao
Model Number : bacteria
Place of Origin : China
Certification : ISO,CE
MOQ : 50kg
Packaging Details : 25kg/bag
Delivery Time : 3days
Payment Terms : T/T
Supply Ability : 300tons/month
Temperature Range : 5-45°C
Ph Range : 6.5-8.5
Hardness : >95
Storage : Store In A Cool And Dry Place
Shelf Life : 2 Years
Certifications : ISO 9001, ISO 14001, OHSAS 18001
Package : 25kg/bag
Type : Bio Bacteria
The groundbreaking aerobic bacterial formula mentioned above is designed to speed up the breakdown of organic waste in various facilities such as wastewater treatment plants, landfills, and composting facilities. This innovative formula is created using potent strains like Bacillus subtilis and Pseudomonas putida, which thrive in environments rich in oxygen. These strains work efficiently to break down fats, proteins, and carbohydrates quickly and effectively.
This product is particularly suitable for both municipal and industrial applications as it has the capability to reduce sludge volume by as much as 40% while also helping to control unpleasant odors. Furthermore, it is compatible with existing aeration systems, making it easy to implement in various settings, and it is environmentally safe for aquatic ecosystems.
Proprietary blend of Bacillus subtilis (starch/fat degradation), Nitrosomonas (ammonia oxidation), and Pseudomonas putida (hydrocarbon breakdown).
Concentration: 2×10 9 – 5×10 9 CFU/g (colony-forming units per gram).
pH Range: 5.0–9.5 (acidic to alkaline wastewater compatibility).
Temperature Tolerance: 4°C–55°C (works in cold climates and high-heat effluents).
Salinity Resistance: Functions in brackish water up to 3% salinity.
Achieves visible sludge reduction within 48–72 hours of application.
Shelf-stable for 18 months in dry, cool conditions (no refrigeration required).
Non-pathogenic and non-corrosive to pipes, pumps, or concrete tanks.
Compatible with UV disinfection systems and common flocculants (e.g., PAC, alum).
Dosage Efficiency: 1 kg treats 5–10 tons of wastewater (varies by pollutant load).
Reduces energy consumption in aeration tanks by 15–20% through improved oxygen utilization.
Reduces COD (Chemical Oxygen Demand) by 70-90% in various industries such as food processing, textile, chemical, and pharmaceutical effluents. It effectively breaks down stubborn pollutants including fats, oils, synthetic dyes (e.g., azo dyes), phenols, and surfactants. Additionally, it plays a crucial role in preventing sludge bulking in activated sludge systems while reducing scum formation in clarifiers.
This solution degrades organic solids present in sewage sludge, resulting in a 30-50% reduction in disposal costs. It also effectively controls hydrogen sulfide (H2S) odor in pumping stations and sewer networks. Moreover, it enhances nitrification in aeration tanks to meet NH3-N discharge limits of less than 2 ppm.
In aquaculture and pond ecosystems, the treatment stabilizes ammonia levels below 0.5 ppm and nitrite levels, thereby improving survival rates in shrimp and fish farms. It also suppresses harmful algal blooms by competing for nutrients like phosphates. Furthermore, it maintains dissolved oxygen (DO) levels above 4 mg/L to support healthy aquatic life.
This method accelerates the decomposition of food waste, agricultural residues, and manure in aerobic digesters. It contributes to reducing landfill leachate toxicity by degrading cellulose and lignin compounds present in organic waste materials.
These systems play a vital role in clearing grease blockages in various settings such as septic tanks, RV systems, and restaurant grease traps. They are also effective in minimizing sludge buildup in home sewage treatment plants and communal drainage systems.
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Water Cleaning Organic Microorganisms Bacteria Reducing Organic Pollutants And Improving Water Images |