See how adjustable intake and exhaust ducts dynamically reposition based on container size to i
See how deposition-based frost capture replaces condensation to harvest water in arid, sub-free
See how deposition-based water harvesting captures atmospheric vapor as frost below freezing, t
See how a rotatable foot pad with pneumatic airflow replaces towel drying, reducing water consu
See how a photovoltaic cell heats an evaporation chamber through transparent surfaces, merging
See how coupling an absorption heat transformer with an Organic Rankine Cycle replaces electric
See how a photovoltaic cell forms an evaporation chamber using its own thermal energy to desali
See how a photovoltaic cell's thermal energy evaporates untreated water in an integrated chambe
See how phase-changing water vapor to frost prevents tube clogging in gas monitoring, enabling
See how a disposable condenser bag uses Peltier cooling with segmented ducts and recovers waste
See how movable intake and exhaust ducts adjust position and orientation based on container siz
See how a Peltier cell simultaneously heats unrefined liquid and cools vapor, recycling condens
See how phase-changing water vapor to frost in a collecting unit prevents tube clogging and mai
See how a porous material transports condensed water from cooled compartment openings to safe d
See how a porous-material collector uses capillary transport to guide condensed water away from
Solar-heated airflow and a thermoelectric condensing plate recover water from humid air with less equipment, space, and energy.
Capillary transport moves condensation from cooled compartment openings to an external removal area, preventing drips on samples and components.
A porous wick guides condensate from cooled compartment openings to cooling elements, preventing drips onto containers and sensitive parts.
A solar-heated funnel and thermoelectric condensing surface recover water from humid air with less equipment, space, and energy.
Local distillation plus capsule-based mineral dosing delivers pure, better-tasting mineralized water while cutting bottle transport and plastic waste.
Phase-change circulation replaces mechanical pumps in distillation condensation, maintaining temperature within ±0.5°C and a gradient below 0.5°C.
Evaporation and condensation drive a pump-free thermosiphon, maintaining low gradients and rapid temperature changes in petroleum distillation.
Reintroducing cooled condensate into the bioreactor gas stream maintains reaction volume and osmolality while minimizing waste from moisture condensation.
A capacitive separator device uses RC oscillator circuits to measure dielectric differences between gas, hydrocarbon, and water phases.
A water purification device uses Peltier cells to heat impure water while a heat exchanger transfers thermal energy from vapor condensation.
Thermoelectric evaporation reduces energy consumption while a mineral addition mechanism ensures drinkability.
A kinetic theory-based computational fluid dynamics method transforms internal heat energy into directed kinetic energy via the Coanda jet effect.
An integrated evaporation chamber uses a photovoltaic cell to heat air and evaporate untreated water, eliminating separate heating units.
Nanopore adsorbents capture atmospheric moisture while Peltier elements drive desorption, reducing power consumption for dry climate harvesting.
An acid purifier integrates liquid level control components with a Peltier semiconductor cooler for stable condensation.