This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Water stored in dams and reservoirs for humans to use often evaporates, especially in hot regions like southern Africa. Rising temperatures speed up evaporation, leaving less water for people, farming and industry.
Daniel Kwasi Kpeglo has just completed a Ph.D. in physics. He explains his laboratory research into a new design—a thin nanomaterial floating cover that could be placed over lakes and dams like a blanket, reducing evaporation by limiting the amount of infrared heat from the sun that reaches the water. He also outlines what hurdles need to be cleared for the design to be tested in the real world.
Reducing evaporation simply means wasting less of the water we already have. The idea behind my research was quite simple: If we can keep more of the water that we have already stored, we reduce the pressure to find new sources of water. This is especially relevant for Africa, where water stored in dams and lakes can make an important contribution to water security, food production and resilience to drought.
My research focused on a new nanotechnology-based floating cover for water. The idea is similar to putting a carefully designed shade or cover over the water surface. I decided to see if a nanomaterial that already exists could be placed on water to act like a selective filter for sunlight.
My research aimed to find out for the first time if a nanomaterial could solve the problem of evaporation by allowing much of the visible light through while blocking much of the heat-carrying infrared radiation. This nanomaterial is made by putting an extremely thin layer of material called a transparent conducting oxide onto a lightweight, flexible plastic sheet. This cover helps keep the water surface cooler.
It's necessary to allow some sunlight through because otherwise aquatic plants and animals would die. My cover allows useful light to get through but protects the water from the heat. In our experiments, the cover allowed more than 60% of visible light to pass through on average while reflecting more than 80% of infrared light back at the sun.
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