Around the world, billions of people still lack reliable access to safe drinking water. The United Nations estimates that 2.2 billion people do not have safely managed drinking water, while regions from California to the Middle East increasingly rely on desalination plants to turn ocean water into fresh water.
Desalination can provide a critical water supply, but today's most common methods come with significant drawbacks. Reverse osmosis forces water through specialized membranes to remove salt, while thermal distillation uses heat to separate fresh water from seawater. Both approaches can consume large amounts of energy, often require water treatment before and after the process, and generate a highly concentrated salty waste known as brine.
When that brine is discharged back into the ocean, it can increase local salinity and reduce oxygen levels, creating harmful conditions for marine organisms.
Researchers at the University of Rochester have developed a different approach that could help address several of those problems at once.
Scientists at URochester's Institute of Optics created a solar thermal desalination system designed to produce fresh water efficiently without generating liquid brine or requiring chemical additives to pre-treat the incoming water. The method is described in a paper published in Light: Science & Applications.
The research was led by Chunlei Guo, a professor of optics and physics and a senior scientist at URochester's Laboratory for Laser Energetics.
To read more, click here.