Horizontal lance segmentation creates uniform gas walls in soil, eliminating uneven supply from single-point vertical injection.
Segmentation creates a lightweight pyramid assembly that expands purification coverage while reducing structural complexity.
Alkali treatment adjusts activated sludge pH to 10 or higher, selectively deactivating nitrite oxidizing bacteria while preserving ammonium oxidizing bacteria.
Segmented aeration cycles reduce suspended solids in septic tanks, resolving the trade-off between treatment effectiveness and effluent purity.
A variable magnetic field reactor accelerates organic matter degradation through enhanced microbial activity and mass transfer.
Segmenting aeration zones into oxygen-deficit and surplus areas resolves nitrate accumulation while maintaining high BOD removal efficiency.
A microbubble generating nozzle produces fine bubbles using adjustable air and water inlets.
A pneumatic mixed liquor elevator uses aeration gas to drive concentrated sludge flow without mechanical pumps.
A spiral geotextile membrane around a perforated tube forces wastewater flow for aerobic bacterial degradation.
A curved aeration grid with nesting extrusions releases oxygen into wastewater for aerobic biodegradation.
Consecutive large-middle-middle large-small media arrangement in anoxic and aerobic stages reduces head loss while maintaining superior water quality.
Evaporating hydrothermal carbonization process water and biologically treating the resulting condensate to reduce organic load.
A wastewater reactor uses a separator structure to reduce suspended solids and excess sludge production.
An interdigitated electrode structure generates a localized fringe field to inhibit biofilm growth on carrier surfaces.
Cyclic flooding and evacuation of a hollow body aerator generates upward fluid motion, enabling denitrification without static ballast weights.