To Make Water Last Year-Round, Kenyans in Dry Regions Are Building Sand Dams on Seasonal Rivers

Children fill cans with water from a sand dam in Makueni County, Kenya, on Friday, March 1, 2024. (AP)
Children fill cans with water from a sand dam in Makueni County, Kenya, on Friday, March 1, 2024. (AP)
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To Make Water Last Year-Round, Kenyans in Dry Regions Are Building Sand Dams on Seasonal Rivers

Children fill cans with water from a sand dam in Makueni County, Kenya, on Friday, March 1, 2024. (AP)
Children fill cans with water from a sand dam in Makueni County, Kenya, on Friday, March 1, 2024. (AP)

On a dry riverbed one recent sunny morning, residents of Kasengela village toiled away mixing cement and sand to make concrete. The sound of their shovels resonated through the valley while other residents, working in pairs, carried rocks to the site in wooden frames.

They were building a sand dam, a structure for harvesting water from seasonal rivers. The barrier, typically made of concrete, impedes water flow and coarse grains of sand settle behind it, creating an artificial aquifer that fills up during rainy seasons.

Seasonal rivers flow a few times a year here, and with little piped water and few reliable alternatives, many people here depend on them for water. Building sand dams on these rivers, where people can scoop the sand to fetch the water or use hand pumps, helps minimize water loss through evaporation and recharges groundwater. This is increasingly important as human-caused climate change is leading to prolonged seasons of drought, scientists say, and the simple sand dam solution has gained traction across dry regions of Kenya and some other parts of Africa looking for reliable water sources. But experts also warn that finding the right sites for structures is key to making them work.

Kasengela village is in Machakos County, which, alongside other counties of Makueni and Kitui in southeastern Kenya, is classified as arid and semi-arid. For many communities here, sand dams built on seasonal rivers have grown in popularity.

That's true for Kyalika village in Makueni County, where Rhoda Peter and her welfare group have built three sand dams along a nearby river. When The Associated Press met her, she was fetching water from one of the dams to clean utensils and wash clothes.

Peter put a yellow container on the shallow well platform and walked to the pump, pulling it up and pushing it down until it was full. Nearby, a donkey stood with two containers hanging on its back.

“When I think about sand dams, I feel happy,” said Peter, a farmer. “Our shallow well does not dry. It goes all through the dry seasons.”

Before the sand dams were built, she and her children would walk many miles to fetch water in springs in the faraway Mbooni Hills. It took them three hours, and many times they’d fall because of the rocky terrain.

Many people in Kenya's dry southeastern region rely on boreholes and rivers for water, but many boreholes produce saline water and permanent rivers are few and far for most people. Earth dams are another source, but they're also few and require regular desilting.

At the site in Kasengela, Mwanzia Mutua, the leader of the group constructing the dam, said that he used to trek seven kilometers (4.3 miles) from his home to Athi River to fetch water for his household and livestock, spending an entire day on the road. Later, a borehole was constructed, shortening the distance, but it was still far. The sand dam will reduce the walk to get water to 10 minutes, he said.

“When water is far, you spend all your time looking for it and are unable to do any other work,” said the farmer. “Cattle die because the water is far.”

The sand dam in Kasengela was completed on March 14 after two and a half months of construction, and should be ready to use by December 2025, after it fills with sand.

Only 5% of Makueni’s nearly 245,000 households had access to clean piped water by 2022. The county produces about 30,000 cubic meters per day against a demand of 60,000 cubic meters.

“The water situation in Makueni is dire,” said Mutula Kilonzo Junior, the county's governor. “We have a huge deficit that we are not supplying.”

Shortages of water lead to problems for agriculture and health implications as people are forced to use unclean sources, taking the time and energy of children to fetch water, affecting their education, he said.

The Makueni County government has been building sand dams with partner organizations and residents, and by 2022, it had built 71, according to county government data.

“Seasonal rivers run dry barely after a week of raining. So for us, we have to store their water, and this is the best way for us to do it,” said Sonnia Musyoka, county minister for environment and climate change. “With such dams, we will enable children to stay at school, and parents to concentrate on other economic activities.”

The construction of sand dams in the region is community-driven. Africa Sand Dam Foundation — which helped build the dams in Kyalika and Kasengela — is one nonprofit supporting communities in Makueni, Machakos and Kitui to build sand dams. Residents approach the nonprofit with a request to build a dam and provide sand, rocks and other locally available material plus labor. Meanwhile, the nonprofit, through partners, provides hardware material such as cement and skilled expertise. After construction, the community manages the sand dam.

Since it started in 2010, the nonprofit has constructed 680 sand dams in the three counties.

“We’ve used this model for years, and we’ve seen its success,” said Andrew Musila, development director at Africa Sand Dam Foundation, at the Kasengela site. “To us, sand dams are the best solution for water provision in arid regions and the best solution for providing communities with water throughout the year."

The usefulness of the structures has gained the attention of governments of other local counties, as well as other countries. ASDF has worked with governments and nonprofits in Malawi, Zimbabwe, Mozambique, Madagascar, Eswatini, Ethiopia, Tanzania, Somalia and India to site, design and build sand dams as well as train people in the processes.

Scientists warn that proper siting of sand dams is key to making them work. A study carried out in Kitui County found that about half of 116 sand dams surveyed were not functional because they were built in locations with unfavorable factors for enabling sand dams to supply water. Factors to consider, the study says, include the rainfall amount, the percentage of clay in the soil and the presence of visible rock formations.

“You cannot put a sand dam anywhere,” said Keziah Ngugi, lead author of the study and a hydrologist with interest in dryland areas. “The most important thing to observe is the siting.”

And as climate change makes drought more likely, scientists say the structures minimize water loss through evaporation because they store water within sand, and that helps with water supply during dry seasons. Additionally, they say the structures rejuvenate surrounding vegetation and recharge groundwater, raising the water table.

“There are good things that happen when the water table is raised,” said Dorcas Benard, an environmental and biosystems engineer. She gave examples of the emergence of alternative water sources or resources like springs and boreholes. “These are very important sources, especially within the arid and semi-arid lands."

And for residents like Mutua, the builder in Kasengela, they offer hope for improved livelihoods. Spending weeks building the dam with fellow residents may be arduous work, but the reward of having reliable water near his home will be fulfilling in immeasurable ways.

“Water is life,” he said.



Rocket Re-entry Pollution Measured in Atmosphere for 1st Time

A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
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Rocket Re-entry Pollution Measured in Atmosphere for 1st Time

A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)

When part of a SpaceX rocket re-entered Earth's atmosphere exactly a year ago, it created a spectacular fireball that streaked across Europe's skies, delighting stargazers and sending a team of scientists rushing towards their instruments.

The German team managed to measure the pollution the rocket's upper stage emitted in our planet's difficult-to-study upper atmosphere -- the first time this has been achieved, according to a study published on Thursday.

It is vital to learn more about this little-understood form of pollution because of the huge number of satellites that are planned to be launched in the coming years, the scientists emphasized.

In the early hours of February 19, 2025, the upper stage of a Falcon 9 rocket was tumbling back to Earth when it exploded into a fireball that made headlines from the UK to Poland.

"We were excited to try and test our equipment and hopefully measure the debris trail," the team led by Robin Wing and Gerd Baumgarten of the Leibniz Institute of Atmospheric Physics in Germany told AFP via email.

In particular, the scientists wanted to measure how the rocket polluted what they call the "ignorosphere" -- because it is so difficult to study.

This region between 50 to 100 kilometers (31 to 62 miles) above Earth includes the mesosphere and part of the lower thermosphere.

- 'Harbinger' -

The team used technology called LIDAR, which measures pollution in the atmosphere by shooting out lots of laser pulses and seeing which bounce back off something.

They detected a sudden spike in the metal lithium in an area nearly 100 kilometers above Earth. This plume had 10 times more lithium than is normal in this part of the atmosphere.

The team then traced the plume back to where the rocket re-entered the atmosphere, west of Ireland.

For the first time, this proves it is possible to study pollution from re-entering rockets at such heights before it disperses, the scientists said.

But the impact from this rocket pollution remains unknown.

"What we do know is that one ton of emissions at 75 kilometers (altitude) is equivalent to 100,000 tons at the surface," they said.

The study warned the case was a "harbinger" of the pollution to come, given how many rockets will be needed to launch all the satellites that Earth is planning to blast into space.

Currently, there are around 14,000 active satellites orbiting our planet.
In the middle of last month, China applied for permission to launch around 200,000 satellites into orbit.

Then at the end of January, billionaire Elon Musk's SpaceX applied for permission to launch one million more.

Eloise Marais, a professor of atmospheric chemistry at University College London not involved in the new study, told AFP the research was "really important".

"There is currently no suitable regulation targeting pollution input into the upper layers of the atmosphere," she explained.

"Even though these portions of the atmosphere are far from us, they have potentially consequential impacts to life on Earth if the pollutants produced are able to affect Earth's climate and deplete ozone in the layer protecting us from harmful UV radiation."

The study was published in the journal Communications Earth & Environment.


Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
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Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS

For more than a century, biology textbooks have stated that vision among vertebrates - people included - is built from two clearly defined cell types: rods for processing dim light and cones for bright light and color. New research involving deep-sea fish shows this tidy division is, in reality, not so tidy.

Scientists have identified a new type of visual cell in deep-sea fish that blends the shape and form of rods with the molecular machinery and genes of cones. This hybrid type of cell, adapted for sight in gloomy light conditions, was found in larvae of three deep-sea fish species in the Red Sea, Reuters reported.

The species studied were: a hatchetfish, with the scientific name Maurolicus mucronatus; a lightfish, named Vinciguerria mabahiss; and a lanternfish, named Benthosema pterotum. The hatchetfish retained the hybrid cells throughout its life. The other two shifted to the usual rod-cone dichotomy in adulthood.

All three are small, with adults measuring roughly 1-3 inches (3-7 cm) long and the larvae much littler. They inhabit a marine realm of twilight conditions, with sunlight struggling to penetrate into the watery depths.

The vertebrate retina, a sensory membrane at the back of the eye that detects light and converts it into signals to the brain, possesses two main types of light-sensitive visual cells, called photoreceptors. They are named for their shape: rods and cones.

"The rods and cones slowly change position inside the retina when moving between dim and bright conditions, which is why our eyes take time to adjust when we flick on the light switch on our way to the restroom at night," said Lily Fogg, a postdoctoral researcher in marine biology at the University of Helsinki in Finland and lead author of the research published in the journal Science Advances.

"We found that, as larvae, these deep-sea fish mostly use a mix-and-match type of hybrid photoreceptor. These cells look like rods - long, cylindrical and optimized to catch as many light particles - photons - as possible. But they use the molecular machinery of cones, switching on genes usually found only in cones," Fogg said.

The researchers examined the retinas of fish larvae caught at depths from 65 to 650 feet (20 to 200 meters). In the type of dim environment they inhabit, rod and cone cells both are usually engaged in the vertebrate retina, but neither works very well. These fish display an evolutionary remedy.

"Our results challenge the longstanding idea that rods and cones are two fixed, clearly separated cell types. Instead, we show that photoreceptors can blend structural and molecular features in unexpected ways. This suggests that vertebrate visual systems are more flexible and evolutionarily adaptable than previously thought," Fogg said.

"It is a very cool finding that shows that biology does not fit neatly into boxes," said study senior author Fabio Cortesi, a marine biologist and neuroscientist at the University of Queensland in Australia. "I wouldn't be surprised if we find these cells are much more common across all vertebrates, including terrestrial species."

All three species emit bioluminescence using small light-emitting organs on their bodies, mostly located on the belly. They produce blue-green light that blends with the faint background light from the sun above. This strategy, called counterillumination, is a common form of camouflage in the deep sea to avoid predators.

"Small fish like these fuel the open ocean. They are plentiful and serve as food for many larger predatory fishes, including tuna and marlin, marine mammals such as dolphins and whales, and marine birds," Cortesi said.

These kinds of fish also engage in one of the biggest daily migrations in the animal kingdom. They swim near the surface at night to feed in plankton-rich waters, then return to the depths - 650 to 3,280 feet (200 to 1,000 meters) - during daytime to avoid predation.

"The deep sea remains a frontier for human exploration, a mystery box with the potential for significant discoveries," Cortesi said. "We should look after this habitat with the utmost care to make sure future generations can continue to marvel at its wonders."


Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
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Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo

Osaka has received an unusual donation -- 21 kilograms of gold -- to pay for the maintenance of its ageing water system, the Japanese commercial hub announced Thursday.

The donation worth $3.6 million was made in November by a person who a month earlier had already given $3,300 in cash for the municipal waterworks, Osaka Mayor Hideyuki Yokoyama told a press conference.

"It's an absolutely staggering amount," said Yokoyama, adding that he was lost for words to express his gratitude.

"I was shocked."

The donor wished to remain anonymous, AFP quoted the mayor as saying.

Work to replace water pipes in Osaka, a city of 2.8 million residents, has hit a snag as the actual cost exceeded the planned budget, according to local media.