Atmospheric water vapor is ubiquitous and represents a promising alternative to address global clean water scarcity. Sustainably harvesting this resource requires energy neutrality, continuous production, and facility of use. However, fully passive and uninterrupted 24-hour atmospheric water harvesting remains a challenge. Here, we demonstrate a rationally designed system that synergistically combines radiative shielding and cooling— dissipating the latent heat of condensation radiatively to outer space—with a fully passive superhydrophobic condensate harvester, working with a coalescence-induced water removal mechanism. A rationally designed shield, accounting for the atmospheric radiative heat, facilitates daytime atmospheric water harves...
According to the survey, the water content in the air is as high as 14,000 km3. To make full use of ...
Even about 70% of our planet is covered by water, lack of access to clean water is still a pervasive...
The cooling power of a radiative cooler is more than halved in the tropics, e.g., Singapore, because...
Atmospheric water vapor is ubiquitous and represents a promising alternative to address global clean...
The global challenge of clean water scarcity needs to be confronted with novel sustainable, climate ...
Water scarcity is one of the greatest global challenges at this time. Significant efforts have been ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, September...
International audienceAn inexpensive radiative condenser for collecting atmospheric vapor (dew) was ...
Abstract Atmospheric water harvesting (AWH) provides a fascinating chance to facilitate a sustainabl...
Water may be produced from atmospheric humidity anywhere on Earth; however, current approaches are e...
Water scarcity is at the center of the world’s greatest challenges, including famine, disease, and s...
abstract: Limited access to clean water due to natural or municipal disasters, drought, or contamina...
This study investigates the potential for energy and water sustainability in hot and humid climates ...
Solar thermal collectors are generally unproductivity at night without sunlight. Radiative cooling, ...
This paper outlines the prospect of obtaining water from atmospheric air by cooling it to the dew po...
According to the survey, the water content in the air is as high as 14,000 km3. To make full use of ...
Even about 70% of our planet is covered by water, lack of access to clean water is still a pervasive...
The cooling power of a radiative cooler is more than halved in the tropics, e.g., Singapore, because...
Atmospheric water vapor is ubiquitous and represents a promising alternative to address global clean...
The global challenge of clean water scarcity needs to be confronted with novel sustainable, climate ...
Water scarcity is one of the greatest global challenges at this time. Significant efforts have been ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, September...
International audienceAn inexpensive radiative condenser for collecting atmospheric vapor (dew) was ...
Abstract Atmospheric water harvesting (AWH) provides a fascinating chance to facilitate a sustainabl...
Water may be produced from atmospheric humidity anywhere on Earth; however, current approaches are e...
Water scarcity is at the center of the world’s greatest challenges, including famine, disease, and s...
abstract: Limited access to clean water due to natural or municipal disasters, drought, or contamina...
This study investigates the potential for energy and water sustainability in hot and humid climates ...
Solar thermal collectors are generally unproductivity at night without sunlight. Radiative cooling, ...
This paper outlines the prospect of obtaining water from atmospheric air by cooling it to the dew po...
According to the survey, the water content in the air is as high as 14,000 km3. To make full use of ...
Even about 70% of our planet is covered by water, lack of access to clean water is still a pervasive...
The cooling power of a radiative cooler is more than halved in the tropics, e.g., Singapore, because...