
HEDeNite High-Efficiency Biological Denitrification Technology
Designed for high-concentration nitrate-nitrogen wastewater treatment, the HEDeNite? biological denitrification reactor is based on DLC anaerobic technology and offers the following features:
Technical Features
Optimized reactor design with the development of a nitrogen removal unit and an anti-calcification unit
Specialized nutrient formula to rapidly activate the denitrification potential of granular sludge
Treatment capacity 10 to 20 times higher than conventional systems, with a smaller footprint
Denitrification efficiency exceeding 90%, sludge production reduction by 80%, and minimization of disposal costs.
Specialized nutrient formula to rapidly activate the denitrification potential of granular sludge
Treatment capacity 10 to 20 times higher than conventional systems, with a smaller footprint
Denitrification efficiency exceeding 90%, sludge production reduction by 80%, and minimization of disposal costs.

HEDEAMMON High-Efficiency Biological Ammonia Removal Technology
The two-stage high-efficiency biological de-ammoniation process is developed based on the principle of "short-cut nitrification-anammox" for high-concentration ammonia nitrogen wastewater. Compared to alternative technologies, this process requires no external carbon source, exhibits strong system adaptability, and is stable and easy to control.
Technical Features
Fully autotrophic nitrogen removal, without the need for external carbon sources
Proprietary granulated rhodobacterium amplification technology, enabling rapid biomass expansion
Alkalinity consumption is reduced by approximately 50%, and energy consumption is lowered by 60% compared to traditional nitrification-denitrification processes
High treatment capacity, low sludge production, and low land use
Ammonia nitrogen removal rate of up to 90%
Proprietary granulated rhodobacterium amplification technology, enabling rapid biomass expansion
Alkalinity consumption is reduced by approximately 50%, and energy consumption is lowered by 60% compared to traditional nitrification-denitrification processes
High treatment capacity, low sludge production, and low land use
Ammonia nitrogen removal rate of up to 90%