Waste Water to Clean Energy: Japanese Engineers Harness the Power of Osmosis

Engineers in the city of Fukuoka and their private partners have opened what is only the world's second osmotic power plant. Philip FONG / AFP
Engineers in the city of Fukuoka and their private partners have opened what is only the world's second osmotic power plant. Philip FONG / AFP
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Waste Water to Clean Energy: Japanese Engineers Harness the Power of Osmosis

Engineers in the city of Fukuoka and their private partners have opened what is only the world's second osmotic power plant. Philip FONG / AFP
Engineers in the city of Fukuoka and their private partners have opened what is only the world's second osmotic power plant. Philip FONG / AFP

A Japanese water plant is harnessing the natural process of osmosis to generate renewable energy that could one day become a common power source.

The possibility of generating power from osmosis -- when water molecules pass from a less salty solution to a more salty one -- has long been known.

But actually, generating energy from that has proved more complicated, in part due the difficulty of designing the membrane through which the molecules pass, said AFP.

Engineers in the city of Fukuoka and their private partners think they might have cracked it, and have opened what is only the world's second osmotic power plant.

It generates power from the transfer of molecules between treated sewage water and concentrated seawater, a waste product from a desalination plant in the city.

"If osmotic power generation technology advances to the point where it can be practically used with ordinary seawater... this, in turn, would represent a major contribution to efforts against global warming," said Kenji Hirokawa, manager at Sea Water Desalination Plant.

Osmosis is familiar to most people. It is the process that, for example, causes water to seep out of a cucumber or eggplant when sprinkled with salt.

Water molecules move across membranes from an area of low solution concentration to an area of higher concentrated solution.

At scale, that movement can be significant enough to turn a turbine and thereby generate electricity.

Desalination solution

Fukuoka is particularly well-placed to benefit from the technology because it has a readily available source of extremely salty water -- the brine leftover from desalination.

With no major rivers to sufficiently source its water, the city and wider Fukuoka region of 2.6 million people have relied on a major desalination plant to produce drinking water since 2005.

That left the city with large quantities of concentrated saline wastewater to deal with.

Ordinarily it is diluted and released back to the sea. Previous attempts to find alternatives, including salt making, failed to gain traction.

Then engineering firm Kyowakiden Industry approached the city about harnessing the salty wastewater for osmotic power.

"When our company rolls this out as a business, we aim to build plants roughly five to 10 times the scale of this current facility," said Tetsuro Ueyama, research and development manager at the Nagasaki-based company.

In Fukuoka's system, a generator is attached to a local desalination plant located near a sewage treatment facility.

It draws in highly saline wastewater from the desalination plant and receives treated sewage.

The two separate streams of liquid go through a number of chambers separated by semi-permeable membranes through which water molecules travel from the treated sewage toward the salty water.

That process increases the volume, pressure and speed of the saline water flow, spinning a turbine that generates electricity before the now-diluted mixture is discharged to sea.

The 700-million-yen ($4.4 million) power generation system came online last August, and once running at full capacity, it should generate up to 880,000 kilowatts annually, equivalent to the electricity consumption of 300 households.

However, it will remain devoted to supplying the power-thirsty facility, although it covers just a tiny fraction of its energy needs.

Not 'a pipe dream'

The engineers involved, however, are dreaming big.

The system will go through a five-year test to monitor its performance, including costs and maintenance, particularly for the membrane and other parts exposed to salt.

Financial details of the project have not been disclosed, but engineers admitted that for now the system's power costs "a lot more" than either fossil fuel or renewable energy.

Pumping the water into the system also uses energy itself, and scaling up osmotic power for grid-level energy production has not yet been done anywhere in the world.

Still, officials and experts believe the power source has a future, noting that unlike solar and wind, it is not dependent on weather or light.

And the current high costs are partly because the company had to build a one-of-a-kind power plant, Ueyama said.

Osmotic power has often been seen as primarily useful for estuary areas, where freshwater river flows meet the salty ocean.

But Ueyama said the technique being used in Japan could be useful for countries with large desalination facilities like Saudi Arabia and other Middle Eastern nations.

Kyowakiden is also working on technology that could generate similar power levels from less salty regular seawater.

"First we want to popularize this technology from Fukuoka to the rest of Japan. In order for us to do that, we want to further upgrade our technology to create osmotic power generation that can use ordinary ocean water to generate electricity," he said.

"We don't think this is a pipe dream."



Brooch Given to First Passenger to Board Doomed Steamship Found at Roadshow

The brooch contains a dedication with the date April 21 1894 (AP)
The brooch contains a dedication with the date April 21 1894 (AP)
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Brooch Given to First Passenger to Board Doomed Steamship Found at Roadshow

The brooch contains a dedication with the date April 21 1894 (AP)
The brooch contains a dedication with the date April 21 1894 (AP)

A brooch given to the first passenger to board a Dundee-built steamship 37 years before she sank has surfaced at an antiques roadshow.

The decorative item was presented to Elizabeth Anderson on April 21 1894, the date of the maiden voyage of the SS Citrine, according to the British website ‘itv News.’

Built by Dundee shipbuilders W B Thompson & Co, the Citrine was one of a number of vessels in the Glasgow-based “Gem line,” all of which were named after gemstones or minerals.

The shipping firm was owned by William Robertson, who started out with a single barge in 1852 before growing it into one of the largest coastal bulk shipping fleets in Britain.

The brooch was presented to Anderson by Robertson and is inscribed with the words “SS Citrine, April 21 1894, Elizabeth McIntyre Anderson, from William Robertson.”

The sides of the gold-colored item are shaped as a ship’s rope and its center has been designed as a life ring mounted with a citrine stone, echoing the name of the vessel.

The Citrine sank on March 17 1931 after striking rocks at Bradda Head, Port Erin, on the Isle of Man.

Accounts at the time described the ship’s final moments in darkness, heavy weather and confusion, and the disaster claimed the lives of nine of her 11 crew members.

William Robertson had been dead for 12 years by the time of the sinking but the business remained in family hands under his sons, William Francis Robertson and James Robertson.
The brooch was discovered at a WeBuyVintage roadshow in Fleetwood, Lancashire.


NASA Robot Mission Aiming to Rescue Space Telescope

This handout photo released by NASA on July 31, 2004, shows the Swift spacecraft being unwrapped in Hangar AE at Cape Canaveral Air Force Station at Kennedy Space Center, Florida. (Photo by Handout / NASA / AFP)
This handout photo released by NASA on July 31, 2004, shows the Swift spacecraft being unwrapped in Hangar AE at Cape Canaveral Air Force Station at Kennedy Space Center, Florida. (Photo by Handout / NASA / AFP)
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NASA Robot Mission Aiming to Rescue Space Telescope

This handout photo released by NASA on July 31, 2004, shows the Swift spacecraft being unwrapped in Hangar AE at Cape Canaveral Air Force Station at Kennedy Space Center, Florida. (Photo by Handout / NASA / AFP)
This handout photo released by NASA on July 31, 2004, shows the Swift spacecraft being unwrapped in Hangar AE at Cape Canaveral Air Force Station at Kennedy Space Center, Florida. (Photo by Handout / NASA / AFP)

NASA on Tuesday is set to launch a daring robotic rescue mission, a long shot bid to prevent one of its aging telescopes from vanishing into dust.

If successful, the effort could pave the way for giving other satellites a second life.

The operation is set to last several months, kicking off with the launch of a robot designed to rescue the Swift space telescope that's currently falling towards Earth.

Without intervention, Swift is expected to soon burn up in the atmosphere.

The rescue spacecraft developed by the US startup Katalyst is slated to lift off Tuesday at 1023 GMT from a Pacific Ocean atoll aboard a small rocket named Pegasus.

The rocket-propelled launch vehicle will not take off from a launch pad. Instead, it will be released from a jet.

"Everything about this mission is so crazy," said NASA astrophysicist Regina Caputo with a laugh during an interview with AFP.

After it reaches an orbit near that of the telescope, the robot must locate Swift across the vastness of space.

The aim is then for the robot to maneuver around the telescope and latch on with three movable arms.

It will then vie to tow Swift into a stable orbit over the course of at least a month, rescuing it from destruction by moving it about 300 kilometers higher.

"This is a lot of firsts stacked on top of each other," said Shawn Domagal-Goldman, the director of NASA's astrophysics division, during a recent call with reporters.

"I'm just deeply thankful that we're even giving this a go."

The idea of such a rescue might seem odd at first glance.

The Neil Gehrels Swift Observatory telescope was launched in 2004, and was originally designed for a two-year mission.

The device was intended to study gamma-ray bursts, what Caputo called "the most energetic things that happen in the universe."

She likened it to a supercharged version of a supernova, which is a dramatic, explosive death of a star.

Gamma-ray bursts are extremely brief, she explained, so the telescope was placed at an altitude of approximately 600 kilometers in low Earth orbit, so it could remain in constant communication with researchers.

But with that pro came a con -- at such an altitude, the device without its own propulsion would eventually drift closer to Earth and burn up in the atmosphere.

Caputo said that phenomenon was expected and normal, because when the Sun is in its more active cyclical stages, it emits more particles and causes an expansion of Earth's atmosphere.

That creates drag, meaning satellites in low Earth orbit lose altitude.

Yet when forecasts in early 2025 indicated the telescope was nearing the end of its life, NASA began considering a possible rescue.

"We decided, yeah, we want to go save this one this time, because of how special it is," said Domagal-Goldman.

Despite its age, the Swift telescope remains in high demand within the scientific community, not least for its rapid response capabilities.

Should it burn up, it could not be immediately replaced.

The mission attempting unprecedented maneuvers has a projected cost of $30 million to save the device, which originally cost $250 million.

The rescue robot named LINK will have to overcome numerous challenges and unknowns.

For example, engineers do not have a clear picture of what the back of the telescope actually looks like -- even though that's where the robot must latch on.

With a laugh, Caputo projected the chances of success at "maybe 50-50."

Still, both NASA and the company Katalyst believe the mission -- which could run into the fall -- might pave the way for new possibilities in spacecraft management, and is worth a shot.

Robert Lamontagne, a vice president at Katalyst, said during a call with journalists that it could represent the "start of a new model" to "refuel, reposition, repurpose, repair, and even upgrade satellites, even if they were never prepared for it."


Rare Dinosaur Fossil from Antarctica is Found Tucked Away in a Drawer

This image provided by the Natural History Museum shows a fossil found in Antarctica that belongs to a group of dinosaurs called titanosaurs. (Natural History Museum via AP)
This image provided by the Natural History Museum shows a fossil found in Antarctica that belongs to a group of dinosaurs called titanosaurs. (Natural History Museum via AP)
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Rare Dinosaur Fossil from Antarctica is Found Tucked Away in a Drawer

This image provided by the Natural History Museum shows a fossil found in Antarctica that belongs to a group of dinosaurs called titanosaurs. (Natural History Museum via AP)
This image provided by the Natural History Museum shows a fossil found in Antarctica that belongs to a group of dinosaurs called titanosaurs. (Natural History Museum via AP)

Scientists have stumbled on a rare dinosaur fossil from Antarctica, tucked away for decades in a drawer.

The bone comes from the tail of a long-necked, plant-eating dinosaur called a titanosaur. Scientists haven't yet identified the species it belongs to, The Associated Press reported.

It was discovered in 1985 during an expedition to Antarctica's James Ross Island and collected by geologist Mike Thomson. Working with the British Antarctic Survey, Thomson was mapping the area's rock layers and collected marine reptile fossils to help with future dating efforts. He recorded the find as a large reptile.

Decades later, paleontologist Mark Evans spotted the bone in the British Antarctic Survey's collections and wondered whether it might be a dinosaur.

He and other researchers analyzed the shape of the bone and compared it to other more complete dinosaur remains, confirming their discovery. The findings were published on Monday in the journal Acta Palaeontologica Polonica.

Dinosaur fossils are rare to find in Antarctica because of the unforgiving ice caps. But millions of years ago, when this dinosaur lived, the region was populated by lush forests — a “rather different and much more hospitable place than we think of today,” said study co-author Paul Barrett with the Natural History Museum in London.

At about 23 feet (7 meters) long, the dinosaur was small for its group and may have been young when it died. Scientists don't know how the creature met its end, but they think its body floated away from the coast and sank to the sea floor, becoming fossilized in marine rock.

Technology has come a long way since the dinosaur tail bone was first found, allowing researchers to peer inside bones and gain even more detailed information about ancient creatures. Thomson died in 2020 before the fossil was identified as belonging to a dinosaur.

“If he were still with us, he would be delighted to know what this was,” Evans, a study co-author, said.