A cleaning water supply device uses a storage tank to hold pre-mixed ultrapure water with added solutes for consistent delivery.
Periodic pulse dosing of chlorine dioxide prevents microbial adaptation while avoiding harmful chemical accumulation in industrial water systems.
Multiway valve automates soft water hardness cell regeneration, eliminating manual labor and preventing brine contamination in the main flow.
A regeneratable carbon bed captures ionic contaminants using chemical treatment and phase separation.
Electrolysis creates positive bubbles to attract contaminants, while ultrasonic oscillation explodes them to sterilize germs without chemical agents.
Supercritical water hydrolysis breaks down recalcitrant sludge polymers, eliminating residual solids and reducing digester volume requirements.
Oxidizing agents convert thiocyanates in brine to sulfate ions, preventing thermal decomposition and corrosion cracking.
Vaporizing chlorosilane liquids for alkaline scrubbing to neutralize acidic gases without packing materials.
Sensors monitor wastewater flow and pH to control reactant dosing, reducing chemical consumption in grease separators.
Orientating means align cartridge channels with head ports, eliminating manual adjustment in confined under-sink spaces.
A hydrogen fuel cell powers a water-capture unit to generate pressurized water using stored energy from solar electrolysis.
A method oxidizes reducing substances with hydrogen peroxide then aerates water to remove ammonia before precipitating metal ions using calcium salts.
Separate pipes eliminate switching valve contamination, ensuring stable flow for accurate ultrapure water analysis.
A UV-LED disinfectant head uses a diverging lens to direct radiation toward fluid in a container cavity.
A tank and circulation line decompose ozone water using a concentration meter to measure levels and an additive supply unit for precise dosing.
A predictive analysis system determines membrane performance parameters and diagnostic indicators using normalized operational data.
Forced hot air vaporizes wastewater at atmospheric pressure, eliminating high-pressure vessel requirements and remote transport costs.
An infiltration system manager uses leading indicators to optimize soil moisture and aeration parameters for real-time operational adjustments.
Pressurized emitter modules distribute effluent through sand-filled pods, resolving clogging and geometry constraints in septic systems.
A water treatment system uses a mid-settling zone between series reactors to separate solids from the flow.
Hemp fiber filters remove per- and polyfluoroalkyl substances from water, achieving levels below 70 parts per trillion.
Segmented drainage paths and osmotic pressure remove residual water from the extraction unit, preventing contamination and ensuring stable supply.
Floating aerators and wave mixers harness natural wind energy to drive water movement, reducing maintenance needs while improving effluent quality.
A flow reactor system combines light emitting diodes and lamps to disinfect fluids.
Fuzzy neural network adjusts parameters using transfer learning to predict effluent total nitrogen despite data insufficiency and time-varying dynamics.
System monitors flow and usage patterns to trigger targeted ozonation, eliminating Legionella proliferation risks in stagnant thermal storage tanks.