A carburetor accelerator device integrates a fuel reservoir into the passage to store and deliver fuel through a piston mechanism.
Segmented extruded housing with removable end caps simplifies field service while maintaining peak ozone production.
Merges a heat exchanger and electrostatic precipitator into one unit, recovering thermal energy while preventing electrical shorting.
Ionic liquid extracts mercury from hydrocarbon fluids, preventing equipment corrosion and toxicity without chemical additives.
Nozzle spray generates vapor near the wall to inhibit fouling, eliminating crystallization heat and maintaining production stability.
Ring-shaped tanks inside the scrubber tower reduce pump power requirements by lowering vertical lift distances.
Curvilinear indentations on hollow spheres increase surface area while maintaining free space, resolving pressure drop trade-offs in packed beds.
An asymmetric outlet channel directs swirling liquid into elliptical jets, reducing wall impact in gas scrubbers.
Multilayer polyolefin film structure enables direct thermal bonding to paper substrates without solvent adhesives.
A hydrocyclone system separates scrubber water into distinct particle streams to enable efficient heat recovery from thermal reactor exhaust gases.
Segmented inlet and exhaust ports in a thermal reactor chamber improve gas flow distribution, resolving non-uniform heating near edges.
Diffusion through a wetted porous metal wall eliminates bubble formation and thermal decomposition, ensuring high-purity vapor generation.
A fog collection device positioned adjacent a cryogenic vaporizer captures condensed water droplets from the surrounding air.
Controlled humidity modulates adhesive forces to separate particles by surface energy.