Bio Products— Rebuild MLSS. Reduce COD/BOD. Stabilise Treatment.
VenOne Bio Products are advanced microbial and nutrient formulations developed to optimize wastewater treatment performance. From COD reduction and ammonia removal to biomass enhancement and odor control, our solutions help ETPs and STPs achieve better treatment efficiency, lower operating costs, improved sludge characteristics, and consistent regulatory compliance. Designed for industrial and municipal applications, VenOne delivers reliable biological performance where it matters most.
VenOne ETP Bioculture
Concentrated microbial culture for COD/BOD reduction and MLSS rebuilding in industrial aerobic ETPs. A high-performance microbial culture designed for industrial effluent treatment plants. It rapidly reduces COD, improves biomass activity, controls odor, and enhances overall treatment efficiency while lowering operating costs.
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VenOne STP Bioculture
Concentrated microbial culture for COD/BOD reduction and MLSS rebuilding in STPs. An advanced bacterial formulation for sewage treatment plants that accelerates BOD and COD reduction, improves sludge settling, controls odor, and helps achieve consistent outlet water quality.
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VenOxy Booster
A powerful biodegradation enhancer that increases microbial activity, reduces odor, lowers BOD/COD/TSS, and improves wastewater treatment efficiency even at low dosages.
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VenOne Ammonil
A specialized biological solution for rapid ammonia and nitrite reduction. It supports nitrification, improves nitrogen removal efficiency, stabilizes treatment systems, and enhances water quality.
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VenOne MLSS Booster
A nutrient-rich biomass enhancer that rapidly increases MLSS and MLVSS levels in biological treatment systems. Ideal for low BOD wastewater, biomass recovery, and improving treatment stability. Nutrient-rich formulation that accelerates biomass growth and stabilizes biological treatment systems.
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VenOne MLVSS Booster
A concentrated nutrient formulation designed to rapidly increase MLVSS and active biomass in biological treatment systems. It improves microbial growth, accelerates treatment efficiency, and helps stabilize ETP and STP performance during low-load or shock-load conditions.
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