See how continuous Dry Hydrogen Peroxide generation at 5-50 ppb reduces nosocomial infections b
See how freely movable manganese hydroxide accelerates hydrogen peroxide decomposition for buil
In-line spray heads and steam fixation bleach both fabric surfaces uniformly while cutting water use far below jet vessel bleaching.
Metal-carbene catalysts activate hydrogen peroxide at low temperatures to improve bleaching while reducing cost and environmental impact.
Reactive oxygen species generated from ambient duct air sanitize contaminants while UV and corona discharge control ozone and avoid oxygen buildup.
A free-radical and vaporized disinfectant loop cuts sterilization time while reducing bioburden on medical devices and surfaces.
A closed-loop chamber recirculates free radicals and vaporized hydrogen peroxide to sterilize sensitive items with less residue and material harm.
Polycarboxylic acid, hydrogen peroxide, and sodium azide inactivate two assay enzymes in 4–16 minutes while preserving tissue morphology and signal.
Melting crystallization and distillation purify 2-alkylanthracene; adsorption pretreatment removes impurities from the working fluid.
A dielectric-tube plasma producer uses staged electrode overlap to activate mist and continuously generate peroxynitrous acid.
Replacing toxic osmium catalysts with solid acids enables safe, high-yield oxidative cleavage of bicyclic tetrasubstituted olefins into cyclic diketones.
Sequential acidic and basic cleaning stages remove cerium oxide residues while preventing water marks by avoiding premature drying.
Permanganate and manganese II salt nanoparticles decompose hydrogen peroxide while remaining solid for easy recovery.
Adjusting the molar ratio of amyl and ethyl groups in the working solution resolves contradictions between quinone solubility and hydrogenation speed.
An electrochemical reactor generates hydrogen peroxide in situ to oxidize organosulfur compounds into sulfoxides and sulfones.
Segmented air pathways produce low concentration hydrogen peroxide vapor to resolve calibration bottlenecks in airport security detector testing.
A plasma laminar flow reactor system uses electric fields to infuse target gases into liquids with minimal energy input.
Glass fiber capillary conveyers draw liquid hydrogen peroxide upward, eliminating pressurization risks and violent boiling during high-rate vapor generation.
A detection kit uses catalase and hydrogen peroxide to visually identify surface contamination through bubble formation.
Replacing metal catalysts with ammonia eliminates residues and odors while maintaining oxidation effectiveness.
An aqueous hydrogen peroxide solution with a concentration-dependent pH range enhances olefin epoxidation selectivity and conversion rates.
Metallate ionic liquids decompose solid peroxides below 150°C, eliminating toxic chlorine byproducts and removing heat insulation requirements.
Oxidizing 14-methylbicyclo[10.3.0]pentadecen[1(12)] with hydrogen peroxide and formic acid to produce 3-methylcyclopentadecane-1,5-dione.
Single-step extrusion of acid-modified starch reduces water demand and boosts production efficiency in gypsum board manufacturing.
A plasma laminar flow reactor system infuses gases into liquids via electric field ionization.
A hydrogen peroxide vapor generation device injects liquid onto a heated surface to produce precise doses.
Ionic liquid dispersant enables low-temperature oxygen production from peroxide compounds, eliminating toxic byproducts and heat insulation requirements.
Soluble persulfate capsules convert volatile styrene emissions into solid polymers, ensuring regulatory compliance and worker safety.
A peroxide and ionic liquid composition generates oxygen via catalytic decomposition.
A decontamination formulation uses iron ions to produce hydroxyl radicals that neutralize mold spores.