A cyclone-generating device with a dual pore-size filter separates hazardous particles from dental waste water using vacuum power.
A single-stage exchange reaction between potassium chloride and ammonium sulphate produces crystalline potassium sulphate with high conversion efficiency.
A substrate cutting system uses injection and drain pumps to create a flowable water environment for precise material processing.
Replacing centrifugal separation with plate and frame filtration using a pre-coated PHA layer improves recovery rates and purity.
Spiral conduits generate centrifugal force to remove grit, replacing long tunnels that require major civil engineering works.
A transverse pipe waste separator uses a cylindrical filter to separate solid organic waste from wastewater.
Cyclone in-line strainer separates larger impurities to prevent nozzle clogging and reduce cleaning frequency.
Single drive device actuates rotor and locking mechanism through belt gearing, reducing structural complexity.
Multi-stage centrifugation with surfactants reduces drilling waste volume and disposal costs while enabling fluid reuse.
Predetermined distance between sealing edge and center of gravity prevents denser phase contamination during centrifugation.
Magnetic adsorption removes benzo[a]pyrene from natural extracts without degrading heat-sensitive active ingredients.
A low-energy dynamic filter uses elliptical spiral channels to generate stable Dean vortices for particle separation.
Automated sand management system redirects fluid flow between vessels to prevent collapse from unpredictable solids accumulation.
Segmenting the worm shaft with a stationary pipe-like structure reduces relative peripheral speed against the solid slug, extending component service life.
Jet vacuum accelerates drilling fluid circulation, preventing borehole contamination and aquifer pollution in geothermal reservoirs.
A composite separator substance combines a thixotropic gel with a photocurable sealant to separate blood fractions.
A microfluidic chip uses recirculation vortices to separate blood plasma from cells on a single substrate.
Chilled ethanol solvent extracts botanical oil from milled biomass, preventing undesirable biomass co-extraction through precise parameter control.
Mixing viscous drilling fluids in a tank reduces resistance, allowing centrifuges to separate fine particles that would otherwise clog the recycling process.
Pre-treatment enhances separation efficiency to remove colloidal solids, enabling drilling fluid reuse and reducing operational costs.
A centrifuge cap with a reservoir captures blood cells during separation.
Dean vortices in curved microchannels deform particle rings for stable plasma extraction, resolving clogging issues caused by deformable red blood cells.
Enzymatic extraction of low methoxyl pectin from jelly fig syconium using endogenous pectin methylesterase.
A high-pressure spray extraction method recycles solvents to enhance active ingredient recovery rates.
A polymerizable separator substance migrates between blood fractions during centrifugation to form a solid barrier.
Pre-treating blood with oxygen-ozone mixtures protects stem cells from centrifugation damage, improving transplant effectiveness.