See how a screen-free, liquid-reservoir lint filter captures more lint than traditional screens
See how a sparger-based air cleaner uses detergent-water bubbles to trap pollutants, eliminatin
See how a screen-free liquid spray system captures lint without airflow restriction, reducing f
Heat pipes couple brine absorption with vaporization to cut separation energy use and lower column construction and operating costs.
Selective vapor-transfer membranes replace evaporative and condensing surfaces in HVAC, cutting maintenance while improving compact cooling efficiency.
Rib- and web-supported thin plates increase membrane exposure for water vapor transfer while protecting fragile layers and preserving cell spacing.
A flattened housing routes steam-containing air outside hollow fibers to prevent clogging while keeping humidification compact and uniform.
An internal perforated aerating cell lets poured wine decant, filter particles, and mix with air in one glass to improve aroma and flavor.
By dissipating and stabilizing exhaust gas energy before discharge, this case prevents utility main pipe overload and supports denser chamber layouts.
Sealing liquid submerges WESP gas inlets to isolate modules for offline cleaning, cutting manual maintenance and downtime.
Liquid air cleaning and a pre-filter keep dust out of work machine fuel cells, improving reliability in mines and construction sites.
An upward outlet extension tube lets trapped air escape from elevated engine oil chambers while retaining oil and reducing startup refilling.
Sensors and closed-loop control activate selected sprinklers at pollution hotspots to suppress airborne particles while reducing water use.
A rotary air flow creates a washing-water vortex that captures spatter and fumes with lower pressure loss and less clogging in steel sheet production.
Factory-preassembled tower modules cut cooling tower site labor, assembly time, shipping inefficiency, and weather-related installation issues.
Mixing rosin particles with solvent before electrostatic precipitation raises flux capture and keeps collected flux fluid for easier furnace cleaning.
LiDAR, camera, GPS, and AI data classify trees and spray zones so liquid flow matches orchard conditions while reducing waste.
Sprayed condensed hydrocarbons plus cyclones and filters capture entrained polymer from vapor streams, reducing fouling and stabilizing separation.
Non-specific odor sensors use linear regression on response slopes to trigger abatement spray with better accuracy and less calibration.
Split packing flow paths mix saturated wet air with dry hot air so cooling towers discharge unsaturated air and reduce winter fog and icing.
Sensors adjust fan speed and atomized water flow to suppress dust at elevated transfer points before it spreads.
A submerged flow laminator creates laminar air flow for particle capture while a buffer assembly retains liquid during tilting or overturning.
Adding extractant before cooling removes tar from washing liquid, cuts clogging risk in cooling equipment, and lowers extractant use.
Immersing coal in a water-catalyst mixture cuts SOx during combustion while avoiding complex flue gas desulfurization facilities.
Standardized cooling modules let semiconductor abatement equipment match varying heat loads while cutting bespoke parts and maintenance complexity.
Centrifugal impact and vacuum break tenacious froth bubbles before thickening, filtration, and pumping to improve dewatering.
Bubble-forming gas flow through perforated scrubbing plates increases gas-liquid contact area, improving impurity removal in semiconductor exhaust.
Airflow deposits local airborne allergens onto drinking water, preserving clean water use while restoring daily allergen exposure.
Water sprays wet fibrous dust before it reaches cyclones, preventing web-like clogging while capturing fines in a recirculating tower.
A rotary air flow creates a vortex and water film that capture spatter and fumes while avoiding filter clogging and excess flow pressure.