A water monitoring system integrates rainfall gauges with quality sensors to trigger automated discharge controls.
A composite aqueous treatment solution containing polyphenol and surfactant restores reverse osmosis membrane rejection rates through stable surface adsorption.
Hydraulic suction drives a venturi pump to inject oxidants, reducing power consumption during soil remediation.
Ultraviolet light sources sanitize liquid water in vehicle storage containers while an agitator mixes the fluid to eliminate microbial contamination.
A tank-less ozonation system uses a gas-liquid mixer to rapidly dissolve ozone into water for on-demand dispensing.
Ultrasonic treatment disintegrates biomass before supercritical water gasification to enhance hydrogen yield.
Peripheral port arrangement reduces water softener valve volume by minimizing footprint while maintaining functional simplicity through spatial reorganization.
A laser-based method determines flocculation state by measuring the change width of received scattered light intensity to establish particle size correlation.
A mobile sterilization device couples a UVC LED to a smartphone controller via an optical coupler and light dispersive element.
Dynamic valve modulation maintains optimal water quality without abrupt circulation disruptions, ensuring stable temperature and purity levels.
A solar-powered desalination station uses photovoltaic panels and a heat pump to generate autonomous fresh water.
Adaptor tube sensors monitor permeate quality while eliminating leak risks from retractable probes and reducing fabrication complexity.
A galvanic cell treats contaminated water to separate fluoroalkyl compounds into a concentrate.
Temperature moderation in a wet air oxidation system prevents calcium sulfate precipitation and scaling by keeping contaminants below solubility limits.
Porous silicon-aluminum-iron composite resolves low manganese removal efficiency by expanding specific surface area and increasing active adsorption sites.
Al and Ca compounds decompose boron trifluoride salts, reducing fluorine below 15 ppm.
A filtration membrane cleaning method adjusts chemical solution concentration and duration based on liquid temperature to maintain optimal permeation flux.
Combining nitrate salts with chlorite oxidizers reduces hydrogen sulfide levels in wastewater while lowering total chemical dosage.
Segmenting anaerobic and aerobic phases enables Anammox nitrogen removal without external carbon sources, reducing energy consumption in wastewater treatment.
Segmented filtration and fluidized-bed reactor reduce construction costs while achieving zero liquid discharge.
A mobile trailer unit with automated sensors and valves enables continuous water quality monitoring across a distribution network.
An electron beam system generates aqueous electrons to destroy per- and polyfluoroalkyl substances in water streams.
Ozone generation and destruction systems disinfect closed conduits, eliminating chlorine waste and reducing exposure time.
Oleophilic composite particles deliver microbial nutrients and fatty acids to contaminated sites.
A copper oxide catalyst enables hydrothermal oxidation of organic halogen compounds at temperatures below 200°C.
An electronic control unit manages ion exchange resin regeneration using time or salt optimization strategies.
Aluminum powder sintered porous body selectively occludes tritiated water from vapor, reducing energy consumption and facility size.
A logic-based controller adjusts a blending valve to mix wastewater with fresh water, maintaining a target electrical conductivity level.
Metal nanoparticles-doped porous carbon beads enable catalytic wet oxidation of industrial wastewater streams.
Polyzirconium coagulant removes turbidity and organic matter from water bodies through controlled hydrolytic polymerization.
Helical degradable plastic nuclei shorten the start-up period and stabilize structure under low concentration municipal sewage inflow.
A dry biocatalyst composition degrades contaminants in soil and water using synergistic microorganisms.
A wireless fluid filter monitor transmits sensor data to a remote server for real-time system status tracking.
A filter cartridge header integrates a bypass flow path to adjust the inflow amount of original water into a bypass pipe.
Composite silica sol and organic polymer flocculants resolve sedimentation rate trade-offs to reduce turbidity.
Upstream phosphoric acid injection lowers pH to delay struvite formation, preventing scaling while maintaining reactor productivity.
Segmenting anode and cathode zones in a single tank enables simultaneous organic matter treatment and nitrogen removal without nitrogen content limitations.
A downflow bubble contact oxygenator injects gaseous oxygen into wastewater to achieve high dissolved levels through recirculation.
A submersible sterilization reactor uses an integrated pump to circulate water through a UVC quartz housing for direct tank disinfection.
A recirculating aquaculture system uses a plate and frame filter press to separate solids from wastewater.
A wastewater treatment system recycles methanogenic bacteria from an anaerobic digester to the aerobic reactor.
A recurrent self-organizing radial basis function neural network predicts effluent total nitrogen concentration using adaptive training algorithms.
Segmenting current density across stages prevents concentration polarization and maintains stability while removing total dissolved solids.
An inclined-bottom decanter with a rotating scraper maintains constant sludge concentration despite inlet variations, reducing polymer usage.
A persulfate and ultraviolet light system oxidizes recalcitrant organic contaminants in groundwater.