A chemical oxygen generator uses peroxide and metal oxide catalysts separated by an ionic liquid to produce breathable oxygen.
Preheating water via electrolyser waste heat reduces steam required for degassing.
Admixing electrolytically produced hydrogen with hydrocarbon input gas before reforming to generate synthesis gas.
Eliminates air separation units by using electrolytic oxygen for partial oxidation, reducing fuel consumption and CO2 emissions.
An axial stacked layer cell conducts heat from the center electrode group to the outer casing via a current collector, reducing internal temperature rise.
An energy management apparatus predicts renewable power variations to optimize surplus supply for hydrogen electrolytic cells.
Optimized tube bundle design balances temperature and pressure loss to enhance heat exchange efficiency in water treatment systems.
Electrophoretic deposition creates functionally graded porous nanostructures with controlled particle packing density gradients.
Microwave heating loads co-catalysts onto optical semiconductors for efficient water splitting.
An electrochemical process halogenates carbonyl compounds under anhydrous conditions to produce monohalogenated products.
Catalytic regeneration in dual-circuit redox flow batteries overcomes low energy density by storing excess renewable energy as compact chemical carriers.
Solar thermal decomposition of aragonite produces calcium oxide and carbon dioxide for catalytic fuel synthesis.
A reversible solid oxide electrochemical cell switches between fuel generation and power production using catalyst-enhanced microchannels.
An electrochemical hydrogen pump purifies and regulates hydrogen flow to provide a refined supply for generator cooling.
Magnetic attraction positions the container to reduce hydrogen loss during discharge.
Coordination polymer templates guide self-assembled 1D structures into porous beta-gallium oxide nanobeams.
Square electrode electric discharge machining creates R-shaped corners in super hard alloy honeycomb dies.
Molybdenum-oxo catalyst replaces expensive platinum to generate hydrogen from seawater at neutral pH, achieving 1.47 million mol H2 per mol catalyst per hour.
A controllable gas-distributing device allocates blast-furnace and converter gases to parallel power, chemical, and biotechnological plants.
Oxidation of vicinal diols followed by reductive amination eliminates reactive aldehydes, reducing calcification and enhancing implant durability.
Iron hydrous oxide film bridges passive chromium layers and water-soluble resins, preventing peeling under thermal stress.
A wave power generator uses a submerged tank as a sinker to stabilize the system while storing hydrogen or organic hydride.
Selective electro-chemical removal of plated conductive layers creates isolated areas, resolving manufacturing variability in dielectric components.
Catalytic filter removes formates via conversion, preventing electrode deactivation and maintaining carbon monoxide productivity.
A hybrid system combining electrodialysis and reverse osmosis to selectively remove monovalent ions from desalinated water.
A recirculation electrolytic cell builds dissolved ozone concentration by cycling water through separated anode and cathode chambers.
A split plating drum wraps metallic foil to expose only one surface to the electrolyte for selective deposition.
A catalytic process generates hydrogen peroxide in situ from hydrogen and oxygen gases to disinfect contaminated water.
Bracketing analytes with multi-charged internal standards resolves migration time variations and background noise in complex serum samples.
A rocket combustion chamber uses a reactive coolant film to reduce thermal loading on structural walls.
Automated sorbent recharger eliminates manual preparation errors by generating precise hydroxide and chlorine concentrations for zirconium oxide modules.
A segmented workpiece holder controls pressure differentials to deliver degassed fluid across a semiconductor wafer surface.
A molten metal hydroxide solvent extracts and separates metals from oxide mixtures via selective dissolution and electrochemical reduction.
An integrated syringe generates ozone via corona discharge to treat disc herniation, avoiding bulky equipment and invasive surgical intervention.
Organic electrolytic solution dissolves tungsten, eliminating multistage purification and explosion risks from ammonium nitrate.
A portable electrolytic device generates sodium hypochlorite from salt water using translucent tubes and color-coded electrodes for point-of-use disinfection.
Adjustment device maintains a 3:1 hydrogen to carbon monoxide ratio, resolving concentration fluctuations that reduce methane synthesis efficiency.
A microbial-electrocatalytic system converts carbon dioxide and hydrogen into biofuels using stable electrocatalysts.
A compound green-energy purification device uses electrolysis and multi-stage filtration to separate water from hydrogen gas.
A jet module delivers electrolyte and gas to perform localized plasma-electrolytic polishing on workpiece surfaces.
Point-of-use electrolysis produces stable oxidant concentrations, eliminating shelf-life decay and storage waste.
Adjusting sulfuric acid concentration during electrolysis improves high-rate discharge capacity by enhancing crystallite diameter and packing efficiency.
Row-column addressing reduces signal connections in high-density anode arrays, enabling precise metal deposition without thermal distortion.
Anaerobic bacteria ferment xylose and glucose into butyric acid, which Kolbe electrolysis converts to hexane for high-energy gasoline blending.
Circulating hard elements scour oxide layers from electrodes, eliminating manual maintenance and ensuring continuous wastewater treatment.
A hydrogen production system uses a mixed branch to recycle low purity gas into acceptable output via controlled volume mixing.
Electric current alters reaction zone pH to activate terminal deoxynucleotidyl transferase for nucleotide addition.
Integrated electrolysis supplies hydrogen for hydrodeoxygenation, enabling near complete carbon recovery into methane or methanol products.
Adding an insulating layer increases resistance to reduce rapid charge discharge, solving the voltage holding time bottleneck in REED displays.