Tuesday, September 01, 2026

 

Is Twitter back? Ex-employee fights to revive the blue bird

FILE - A Twitter app icon on a mobile phone is displayed in Philadelphia, U.S.A., April 26, 2017.
Copyright AP Photo


By Jonathan Benton
Published on

Is Twitter back? A startup including former Twitter staffer Stephen Coates launched a new platform this week, giving users early access to a “reclaimed” social media platform and the chance to take the fight to Elon Musk.

To paraphrase a famous saying, "Twitter is dead. Long live Twitter."

A new social network that looks like Twitter, works a bit like Twitter — and is also called Twitter — has just launched, in defiance of a lawsuit from Elon Musk's X.

Virginia-based startup Operation Bluebird, founded by, among others, original Twitter former general counsel and board member Stephen Coates, launched Twitter.now this week.

Coates made the announcement on LinkedIn, saying, “Get over your X. The bird is back.”

In his message he also made clear that Twitter.now "is not an attempt to recreate the old platform," but a service that allows users to decide what kind of content reaches their feeds, based on the principle of "freedom of speech, not freedom of reach".

The campaign to restore Twitter in some form, said Coates, followed Elon Musk’s takeover, rebrand and redesign of the popular social media platform as X.

“There was a place where the whole world came to talk. The richest man alive bought it, and broke it. We're a small team taking Twitter back — rebuilt on trust,” reads the landing page of the website.

The campaign began when Operation Bluebird filed a petition to the US Patent and Trademark Office in December 2025, seeking cancellation of X’s “Twitter” and “tweet” trademarks.

They argued that X had abandoned the trademarks after removing the Twitter branding and replacing it with X, and simultaneously applied for their own Twitter trademark.

The startup was subsequently sued by Musk’s X in an attempt to prevent them from launching the social media platform and accused Operation Bluebird of copyright infringement.

The startup successfully argued that X had let go of the trademarks like “Twitter” and “Tweet” in a US District Court, with Judge Colm Connolly issuing a tentative ruling indicating that X may have abandoned the intellectual property claims, presenting Operation Bluebird with an opportunity to go ahead with their plans.

Join 'the fight' against Musk

The new Twitter is currently at an early access stage, offering people the opportunity to sign up as “founders’ for $20 (€17) to help build and test the platform, and secure popular handles ahead of time.

The platform's homepage makes clear that the launch is a direct response to Elon Musk's changes to the original Twitter, with members also encouraged to pay $40 (€34) to join "the fight" — the startup's ongoing legal battle against X.

The website describes it as a “David & Goliath” battle pitting a small team against “the richest man alive,” as the startup defends its right to launch and operate. X maintains that millions of users still use the old Twitter URL to reach X and still refer to posts on their platform as “Tweets”.

A key element for the new platform is transparency and credibility. The startup is introducing a feature that allows users to “set the dial” on how much “trusted” and “low trust” content and sources appear on their feed

How trust is determined has not been revealed, but the website states that it will run according to “the Birdhouse Constitution and Community Guidelines”.

The company also states that it aims to prohibit illegal content, child exploitation, threats of violence, harassment, scams and other harmful conduct, with policies evolving as the platform grows.

This is in response to widespread claims that X has failed to uphold the platform’s original values, with many dissatisfied users — estimated at 33 million globally — opting for alternatives that they view as more reliable or useful.

 

EU places ChatGPT, Reddit and Roblox under strictest digital safety rules

FILE - FILE - The Chat GPT app icon is seen on a smartphone screen, Aug. 4, 2025, in Chicago. (AP Photo/Kiichiro Sato, File)
Copyright AP Photo


By Una Hajdari
Published on


Brussels has classified ChatGPT as a search engine under the Digital Services Act, a first for an AI chatbot, and designated Reddit and Roblox as Very Large Online Platforms. All three have four months to comply.

The European Commission has designated ChatGPT as a Very Large Online Search Engine and Reddit and Roblox as Very Large Online Platforms under the Digital Services Act, subjecting all three to the bloc's strictest online safety regime

The designation will prove particularly consequential for ChatGPT because the Commission has concluded that an AI chatbot that pulls live results from the internet functions, in regulatory terms, as a search engine — not merely a platform.

"These new designations mean that ChatGPT, Reddit and Roblox will now be held to a higher standard of scrutiny and accountability in the European Union, in line with their large impact on our citizens and society," said Henna Virkkunen, executive vice-president for tech sovereignty, security and democracy.

The Commission described ChatGPT as a "hybrid service" that qualifies as an online search engine under the DSA because it can engage with and respond to users' prompts and queries, including by searching the web.

Reddit and Roblox have been designated as Very Large Online Platforms (VLOPs), as both allow users to create and share content publicly.

"We continue to watch the digital landscape closely and will not hesitate to designate any platform that meets the threshold for enhanced supervision under the Digital Services Act."

Under the DSA, online services that reach more than 45 million monthly users in the EU — roughly one in 10 of the bloc's population — are classified as either Very Large Online Platforms or Very Large Online Search Engines, depending on what they do.

OpenAI disclosed that ChatGPT's search function averaged about 159 million monthly active users in the bloc for the six months ending March 2026, while Reddit reported 57.2 million and Roblox roughly 48 million.

The three services now have four months — until the end of November — to comply with a suite of obligations reserved for the largest platforms, including annual systemic risk assessments covering illegal content, the protection of minors, effects on users' mental and physical wellbeing, fundamental rights, electoral processes and public security.

They must also submit to independent audits and share data with regulators and vetted researchers.

The Commission will supervise compliance in cooperation with Ireland's Coimisiún na Meán, the digital services coordinator for ChatGPT and Reddit, and the Netherlands' Authority for Consumers and Markets (ACM) for Roblox.

The designations bring the total number of platforms and search engines under the DSA's strictest tier to 28.

The regulation has already produced around €870 million in fines, including a record €550 million penalty against AliExpress in July for failing to curb the sale of illegal and counterfeit goods, a €200 million fine against Temu in May for comparable failings and a €120 million fine against X in December 2025 over content moderation and transparency shortcomings.

Non-compliance can attract penalties of up to 6% of a company's global annual turnover — a figure that, for OpenAI and its rapidly growing revenue, could prove substantial.

Washington has taken a dim view of the EU's enforcement drive.

The Trump administration called DMA fines on Apple and Meta a "novel form of economic extortion" and has threatened retaliation against countries with digital rules targeting US tech firms — rhetoric that could sharpen now that three more American-owned services have been brought under direct Commission supervision.

 

Hungary's bee population at risk, warns national beekeepers' association

Bee collecting nectar
Copyright AP Photo

By Beatrix Asboth
Updated

By August, the drought and extreme heat have all but wiped out natural sources of pollen, leaving bees starving and parched.

Prolonged drought and successive heatwaves have wiped out natural sources of nectar and pollen in Hungary, leaving bees facing starvati

The pollen shortage could affect as much as 80% of the country's bee population, warns the National Hungarian Beekeeping Association (OMME). Experts have also alerted the ministry responsible for agriculture and food policy to the crisis.

Pollen is the most important protein source for bee colonies. It's essential for raising young bees and helping them develop properly. Without it, honey yields suffer—and colonies' chances of surviving winter are directly threatened.

For weeks, around 80% of Hungary's bees have had little or no access to natural pollen. The drought has made things worse: even the damp areas and riverbanks that normally still supply food for bees in late summer have dried up this year.

For a hive to survive, worker bees must carry at least a litre of water back to the queen and her larvae to keep them from drying out. The worse the drought gets, the farther bees must fly to find food and water—burning more energy and dying at higher rates as a result.

A lack of nectar can also cause colonies to turn on each other, driving mortality even higher.

Honey bees
Honey bees Michael Reilly/Daily News-Record

OMME says this could lead to significant colony losses by spring 2027. This matters beyond beekeeping, too: honey bees play a key role in pollinating crops, and by extension, in the food supply.

Because of the crisis, OMME has written to Szabolcs Bóna, the minister responsible for agriculture and food policy. Beekeepers are normally required to maintain a set number of colonies, but because of these exceptional losses, many will be unable to meet that requirement through no fault of their own.

OMME is asking the authorities not to automatically penalize beekeepers for expected losses, but instead to take into account the extreme weather and the unprecedented shortage of natural food sources.

The effects of the drought and heat won't end when the season does. How much pollen is available now could decide whether colonies survive the winter, how well they recover next spring, and ultimately, how much honey Hungary produces next year.

 

Icebreaker to Extract Macquarie Island Researchers Due to Bird Flu Fear

Australian icebreaker Nuyina
The icebreaker Nuyina is getting an extra mission to bring the research team home (ADD)

Published Aug 30, 2026 6:30 PM by The Maritime Executive



The Australian Antarctic Division (ADD) is preparing to dispatch its research vessel Nuyina to evacuate all the personnel at the Macquarie Island research station over the risk of a bird flu outbreak.

The Nuyina will sail to the island located in the Southern Ocean to extract the 24 expeditioners currently at the station after it became apparent they are facing the psychological risk of a potential H5 avian influenza (bird flu) outbreak. The station is located some 1,500 kilometers from Nuyina's home port in Hobart, Tasmania.

Apart from the expeditioners, the research vessel will also retrieve essential cargo because it remains unclear for how long the station will be vacated. ADD has only highlighted that it is exploring options for monitoring the situation on the island, hoping the expeditioners will return in the coming seasons.

Critically, this will mark the first time the station will stay without personnel since its establishment in 1948. The station is an important site for conservation, environmental, and climate research projects.

The Australian government contends that although bird flu has not yet been detected at the station, assessments are predicting a high likelihood of an outbreak due to the island being a wildlife sanctuary with up to four million seabirds and 100,000 seals.

The fears emerged after more than 13,000 seal pups died in the Australian territory of Heard Island and McDonald Islands in the summer. The H5 strain of bird flu was first detected on Heard Island late last year, and by June 2026, researchers said more than three-quarters of all pups were believed to have succumbed to the disease. Bird flu is a deadly disease for elephant seals, with a mortality rate of up to 90 percent.

Macquarie is currently free of the disease, but considering that thousands of elephant seals are born close to the station every spring, and because they are susceptible to bird flu, the decision was reached to extract the tradespeople, scientists, and support staff.

The government contends that while the disease’s risk to humans is considered low, the psychosocial risks of living near potentially large numbers of affected animals are unnecessary. The current team of 24 expeditioners has only been at Macquarie station for about five months, having started their year-long deployment in May.

“This is an unusual measure, but it's the most appropriate course of action based on our assessments of risk and operational realities,” said Sean Sullivan, Deputy Secretary at Australia’s Department of Climate Change, Energy, the Environment and Water.

The 525-foot icebreaker Nuyina is being dispatched to evacuate the personnel before it embarks on its scheduled program of Antarctica resupply operations in late October.

The mission to evacuate the expeditioners comes only weeks after ADD unveiled a major project to rebuild the Macquarie Island research station. The agency contends that due to the extreme weather on the island, many of the buildings are deteriorating and approaching the end of their useful life, necessitating a A$370 million (US$266.4 million) rebuild to allow for a continued year-round presence on the island. The project is expected to be completed by 2032.

 

Cancer and virus-free: Bats' longevity genes could hold clues for human health

Bats' longevity genes could hold clues for human health.
Copyright Cleared/Canva


By Marta Iraola Iribarren
Updated

Scientists are studying the mechanisms behind bats' immune systems to uncover what they could teach about human longevity.

Bats are the longest-lived mammals for their size and have the ability to adapt to viruses and boost their defences. Scientists are now trying to see whether humans can learn anything from bats’ ability to resist viruses and even prevent cancer.

A new study published in the journal Nature looked at what these animals can teach about longevity and fighting disease. The findings reveal that the bats' ability to slow ageing and tolerate viruses is genetically linked, suggesting that the same biological 'tricks' protect them from both infections and the decay of old age

“Bats have evolved this incredible fitness capacity, this incredible ability to deal with disease and this incredible ability to be able to prevent cancer,” said Juan Manuel Vazquez, author of the study at the University of California, Berkeley.

“That means that, by understanding how bats have evolved to do all these things that other mammals haven’t, we can find completely new and unexpected ways of dealing with the normal things that cause human diseases.”

For the study, Vazquez travelled to capture, biopsy and release different species of bats. He currently has cell cultures from 259 individuals representing 32 species.

He focused on those in the Myotis genus of bats, known for having some of the most extreme adaptations for longevity and disease resistance among mammals. In this group, the Myotis brandtii (Brandt’s bat) can live up to 42 years.

How bats resist ageing and cancer

By creating high-quality genetic maps for eight different species, the researchers identified the specific biological "tricks" these animals use to survive.

One of the most important findings is that long-lived bats have evolved ways to prevent cancer. For example, the little brown bat (Myotis lucifugus) has an enhanced ability to clear out damaged cells before they can cause harm.

An example of this is a specific immune factor called PKR, as most Myotis species have evolved extra copies of this gene to fight a wider range of viruses.

A different way of fighting viruses

Bats act as zoonotic reservoirs — animals that can carry viruses dangerous to humans without becoming ill themselves. Their ability to do this is a result of a specialised evolutionary strategy known as viral tolerance.

The research found that while most mammals use "resistance" to fight viruses by attempting to eliminate the pathogen, bats have evolved high levels of viral tolerance.

They have developed mechanisms to suppress the damaging inflammation and cellular stress that would normally kill other mammals, which allows the virus to live in their bodies.

For RNA viruses, responsible for human outbreaks such as the COVID-19 pandemic, bats tend to change the number of immune genes they have and evolve extra copies to broaden their defence.

What this means for human disease

Because bats have developed natural solutions to problems like cancer and cellular decay, they provide a roadmap for understanding how these same processes might be managed in humans, the researchers said.

Vazquez noted that bats evolved to live for a long time without getting diseases, which suggests we don't necessarily need to look at diseases of ageing and diseases of infection as completely separate fields.

“We can look at these bats and try to understand how, in the same way you can improve your immune system to fight off viruses, maybe you can improve your immune system so it doesn’t decline in old age,” he noted.

“Or maybe bats can help us find ways to fight off tumors so our immune system doesn’t get tired, and that can also help us deal with other stresses of life and not exhaust our immunity.”

Is Germany's Laacher See volcano stirring again? Scientists detect hundreds of deep earthquakes

Germany's most formidable volcano: the Laacher See erupted 13,000 years ago, devastating parts of Europe
Copyright Df1paw, CC BY-SA 4.0, via Wikimedia Commons


By Franziska Müller
Published on

The Laacher See volcano last erupted around 13,000 years ago. Now, deep below the Eifel, scientists are reporting signs it remains active.

Earthquakes occur in Germany again and again, but many never notice them.

That's because these tremors occur deep below the ground and often have low frequencies.

But far beneath the surface, something could be stirring. That is the suspicion of researchers who have been monitoring Lake Laach in the Eifel region in western Germany over the last few years.

Between September 2022 and August 2023, they used several monitoring stations to record more than 500 micro-earthquakes beneath the lake - which formed in the crater of a volcano that last erupted around 13,000 years ago.

Germany's most powerful volcano

That last explosion was so powerful that ashfall was carried as far as Sweden and Italy, and experts still call for continuous monitoring of the site today.

Several studies show that there is still activity underground. In October 2025, a renewed increase in seismic activity was reported in the Eastern Eifel, most recently confirmed by a study published in 2019.

Researchers refer to these movements as deep low-frequency earthquakes, or DLF for short. These DLF quakes are seen as a sign that the Laacher See volcano could one day erupt again.

The focus of investigations is Lake Laach in Rhineland-Palatinate, the largest lake in the federal state.

The region is known as the Volcanic Eifel for good reason - the Eastern Eifel alone is home to a volcanic field with around 100 volcanoes.

"DLF earthquakes are regarded worldwide as an indication of the movement of magmatic fluids at great depth," explains Torsten Dahm, head of the Earthquake and Volcano Physics section at the GFZ, referring to a study from 2019. "Under active volcanoes, for example in Iceland, Japan or Kamchatka, such earthquakes can be observed regularly."

According to the study, magmatic fluids appear to accumulate at depths of about 12 to 14 kilometres. Magmatic fluids can be water, oxygen, sulphur compounds or halogens. They are released from molten rock and play a key role in determining how explosively a volcano erupts. Their movement can also trigger earthquakes in the subsurface.

These magmatic fluids could rise from the upper mantle into the Earth's crust. According to the Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, they would ascend along the Ochtendung fault zone - evidence that the volcanic system at Lake Laach is still active.

They also indicate that magma chambers exist in the Earth's crust beneath Lake Laach and may be slowly filling.

On the night of 10 October 2025, there was an unusual earthquake swarm with around 92 small microquakes within twelve hours. The strongest quake had a magnitude of just 0.9.

"In total, four spatially confined clusters of such DLF earthquakes have been detected in the Eastern Eifel over the past five years," said lead author Martin Hensch from the Association of State Seismological Services in 2019.

However, researchers do not expect any volcanic activity in the near future. Dating of the magma produced when the volcano last erupted suggests that it may have taken around 30,000 years for the upper magma chamber beneath Lake Laach to fill before the eruption eventually occurred, according to a GFZ statement.

"The ascent of magma into the shallow crust is almost always accompanied by high-frequency earthquake swarms. Such activity has not yet been observed in the Eastern Eifel," said Joachim Ritter from the Geophysical Institute (GPI) at KIT.

"Moreover, there is no evidence of uplift of the Earth's surface, which would have to be clearly detectable in the event of massive magma ascent," adds Dahm.

In addition to the small quakes and, most recently, a so-called earthquake swarm, there are further signs of ongoing CO2 degassing from the mantle.

Bubbles of carbon dioxide can repeatedly be seen on the surface of the lake. Gases rise up from the depths.
Bubbles of carbon dioxide can repeatedly be seen on the surface of the lake. Gases rise up from the depths. RaSlaMa, CC BY 3.0, via Wikimedia Commons

In 2024, the GFZ carried out RMT measurements at two locations around Lake Laach. At both sites the emission of CO2 gases of magmatic origin was detected. Taken together, all these activities ultimately indicate that underground processes are active.

From September 2022 to August 2023, geologists recorded more than 500 local micro-earthquakes in a study published in 2026. In the process, the rock is hydraulically fractured; the researchers describe this as an example of natural hydraulic fracking.

They also found that there is likely a reservoir structure, such as a possible magma chamber, at a depth of around 12 to 14 kilometres. It extends horizontally over 15 kilometres beneath the active earthquake zone.

Ice Age eruption

During the Ice Age, the volcano in the Eifel erupted. Recent studies have redated the eruption: it is now thought to have occurred 13,084 years ago, around 184 years earlier than previously thought.

The eruption was enormous. Volcanic ash is thought to have risen into the stratosphere and probably reached an altitude of 30 kilometres. Winds are believed to have transported the ash over thousands of kilometres - north as far as Sweden and south as far as northern Italy. Today, its explosive power is estimated to be equivalent to around 500 Hiroshima bombs, according to the website of nearby Maria Laach abbey.

Volcanic ash and pumice formed a seven-metre-thick layer in the Rhine valley. Near the volcano, this layer is thought to be around 60 metres thick. In what is now the Cologne-Bonn region, volcanic ash accumulated to a depth of up to one metre.

Lake Laach is the largest lake in Rhineland-Palatinate.
Lake Laach is the largest lake in Rhineland-Palatinate. Bungert55, CC BY-SA 3.0, via Wikimedia Commons

It was only after this that Lake Laach formed. The eruption lasted for 10 days, interrupted by several periods of relative calm. Hot gases, which shattered the basement rock and ancient lava flows when they came into contact with groundwater, cleared a path for magma rising from below.

To date the eruption precisely, a research team from the universities of Mainz, Frankfurt and Heidelberg searched for sulphur deposits in various natural climate archives. They found evidence both in an ice core from Greenland and in a stalagmite from a cave in the Westerwald, with the sulphate concentration proving key.

The volcanic rocks produced during the eruption were later used, among other things, as building material in the 19 Century.

 

US defence firm plans medium-range missile production near Leipzig

Defence Minister Boris Pistorius at a promotion ceremony for officer cadets on "Bundeswehr Day" in Neubiberg, 6 June 2026.
Copyright AP Photo


By Sonja Issel
Published on

Covenant is a relatively new player in the arms industry. The company was founded in 2024 and is also active in Israel.

US defence contractor Covenant plans to start producing medium-range missiles near Leipzig from 2027, according to sources, with up to 1,000 missiles a year thought to be possible.

The plans could bring a previously little-known cruise missile into greater focus in Germany. But what is actually known about the new weapon?

A reported range of more than 1,500 kilometres

The missiles are expected to have a range of more than 1,500 kilometres, Reuters reported, citing people familiar with the matter.

So far, however, few other technical details are known.

According to sources, the missiles are set to cost a few hundred thousand US dollars each, making them significantly cheaper than Tomahawks, which cost around $2 million per missile, depending on the version.

Covenant is also developing a cruise missile called "Anthem," which is seen as the company's flagship project. However, it has not yet been confirmed whether this is the system that is to be produced near Leipzig.

Germany looking to build deep strike capability

Covenant's plans come as Germany addresses a growing need for long-range missiles that are relatively inexpensive and that can be produced in large numbers.

According to reports, Germany's Ministry of Defence has already sent requests for proposals to Covenant as part of plans to build up its deep strike capability.

The company is said to be planning to establish supply chains and production lines in Europe.

Although Covenant is a US company, most of the components are expected to come from Germany and other European countries. For Germany, this could mean less reliance on weapons deliveries from the US.

Who is behind Covenant?

Covenant is a relatively new player in the arms industry. The company was founded in 2024 and is also active in Israel.

The firm is backed by US investor Michael Kaufman, who previously worked for the investment firm Thiel Capital. Its backers are also said to include prominent US technology investors such as Andreessen Horowitz and the Founders Fund.

It remains unclear whether Berlin actually intends to procure Covenant's missiles and how far any talks with the company have progressed.

 

Solar Has Crossed a Critical Economic Tipping Point

  • Solar now requires no more upfront capital than coal or gas to produce the same annual electricity, reversing a disadvantage that was as large as five-to-one a decade ago.

  • Batteries and wider grid flexibility still add real system costs, but firm solar-plus-storage is already competitive with new fossil generation in favorable markets.

  • For capital-constrained emerging economies, solar no longer means paying more today to save money tomorrow. Increasingly, it is the cheaper entry ticket as well.

For years, the economic case for solar came with an awkward qualification. Yes, it had no fuel bill. Yes, its operating costs were low. And yes, over the life of a project it could already produce cheaper electricity than a new coal or gas plant. But first, someone had to pay for it.

Solar concentrated most of its lifetime costs at the beginning. Fossil power appeared to ask for less capital upfront and spread the rest of the bill across decades of coal or gas purchases. In rich countries with deep capital markets, that distinction could be managed. In emerging economies facing high interest rates, limited public budgets and competing infrastructure needs, it could determine what was built.

That disadvantage has now largely disappeared. According to a new Ember analysis, a solar plant can now require less upfront investment than a coal or gas plant for the same amount of electricity delivered. A decade ago, solar could require up to five times as much.

This is not another claim that solar has become cheaper on a lifetime basis. That happened years ago. It is a more fundamental tipping point: solar is now competing with fossil fuels before the first tonne of coal or cubic meter of gas is purchased.

Fossil Power Has Lost Its Financing Shortcut

Comparisons between power technologies are often distorted by nameplate capacity. One megawatt of solar does not produce the same annual electricity as one megawatt of gas, because the sun does not shine continuously. Ember therefore compares the capital required to deliver the same quantity of electricity rather than simply matching the number printed on the generator.

That is the economically relevant comparison. In the past, solar needed considerably more installed capacity to produce the same annual output, while solar modules themselves were far more expensive. The resulting capital burden created a simple argument for fossil fuels: build the cheaper plant now and pay for fuel later.

Mass manufacturing has dismantled that argument. Solar PV's total installed cost has fallen by 87% since 2010, according to IRENA. Module production has become a vast, standardized industrial process. Efficiency has improved, supply chains have expanded and installation experience has accumulated across almost every major market.

Solar's capital profile has not changed, it still requires most expenditure upfront. The amount of capital required has.

That distinction is especially important in countries that import fossil fuels. A gas plant may look affordable on the day it is commissioned, but every megawatt-hour it generates creates another fuel purchase. Solar effectively prepays much of its energy supply for the next 25 to 30 years.

The old choice was between a capital-heavy clean asset and a cheaper fossil asset with recurring fuel costs. Increasingly, it is between two similarly priced assets, one of which arrives with a permanent fuel bill.

The Biggest Impact May Be Outside Rich Economies

Much of the energy transition debate is shaped by Europe, the United States and China. Yet upfront-cost parity may matter even more across fast-growing emerging economies.

These countries often face three pressures at once: rapidly rising electricity demand, high borrowing costs and dependence on imported coal, oil or gas. They need new power quickly but cannot always finance large, centralized projects on favorable terms.

Historically, this created a paradox. Solar offered lower lifetime costs and greater energy independence, but the country most in need of those benefits often faced the highest cost of capital. A project with no fuel expense could still lose to a fossil plant because investors placed more weight on today's financing requirement than tomorrow's import bill.

Upfront-cost parity weakens that trap. Solar is also modular. A country does not need to finance a multi-gigawatt plant in one decision. Capacity can be added in megawatts, expanded in phases and distributed across utility projects, businesses and households. Construction periods are shorter and failed projects do not strand the same concentration of capital.

This does not make finance irrelevant. Interest rates, currency risks, weak grids and uncertain offtakers can still make otherwise cheap solar projects unbankable. The IEA notes that access to commercial energy finance remains substantially weaker in emerging and developing economies than in advanced ones.

But financing a difficult project is different from financing a technology that begins with an inherent capital disadvantage. Solar increasingly faces the first problem, not the second.

Batteries Do Not Make the System Free—But They No Longer Break the Economics

The obvious objection is that annual electricity is not the same product as electricity on demand. A gas plant can generate at night and during a windless week. Solar cannot. A fair system comparison must therefore include some combination of batteries, grids, interconnection, flexible demand, hydropower, backup generation and, in some regions, long-duration storage.

Those costs are real. Pretending otherwise only replaces an outdated criticism of solar with an exaggerated defense of it.

But the flexibility premium is falling almost as quickly as the generation cost before it. IRENA estimates that battery storage costs have declined by 93% since 2010. Its latest assessment puts firm solar-plus-battery electricity at roughly $54–82 per megawatt-hour in high-irradiance regions. That compares with $70–85/MWh for new coal in China and more than $100/MWh for new gas capacity globally. IRENA expects the cost of firm solar to fall by another 30% by 2030.

This does not mean a four-hour battery can carry an entire electricity system through every seasonal shortage. Nor does it mean the same economics apply in Stockholm and Abu Dhabi. System costs rise with renewable penetration, local demand patterns and the duration of flexibility required.

Even Lazard's 2025 analysis, which confirms wind and solar as the cheapest and quickest new-build generation in the United States, stresses that the value of firm capacity rises as more weather-dependent generation enters the grid. Diverse resources will remain necessary.

The point is narrower, and more consequential. Once storage and flexibility are included, solar does not automatically become prohibitively expensive. In favorable markets, firm solar is already within the cost range of new fossil power. Elsewhere, the remaining gap is shrinking.

Intermittency is still an engineering constraint. It is increasingly losing its power as an all-purpose economic veto.

Fossil Plants Carry System Costs Too

Renewables are often asked to account for every cable, battery and backup plant needed around them, while fossil generation is compared at the plant gate. That is not a neutral comparison.

Gas plants require pipelines, import terminals, storage facilities and fuel contracts. Coal needs mines, railways, ports and stockpiles. Both face commodity volatility and supply disruptions. Dispatchability has value, but maintaining the fuel system that enables it is not free.

There is also a strategic difference between infrastructure and fuel. A battery, transmission line or solar panel can deliver services for years. Imported gas disappears the moment it is burned and must then be purchased again.

None of this eliminates the need for firm capacity. It changes how that capacity should be valued. Gas may retain an important role as backup in some systems, but a plant operating fewer hours must recover its fixed costs from less generation. Its electricity can become more expensive even if the plant remains operationally useful.

The future power system is therefore unlikely to be solar plus one enormous battery. It will be a portfolio: cheap solar and wind, batteries for daily shifting, stronger grids, flexible consumption, hydro and other dispatchable low-carbon sources where available, and limited thermal backup for rare shortages. That portfolio has costs. So does the fossil system it replaces.

The Debate Has Moved

For a long time, advocates could argue that solar was cheaper over its lifetime, while critics could answer that many countries could not afford the initial bill. That criticism was not invented. It was one of the transition's most serious bottlenecks.

Now it is being removed by industrial scale rather than political rhetoric. Solar has reached parity not only in the eventual price of electricity, but in the initial capital required to produce it. Batteries are following the same curve, turning firm clean power from a distant ambition into a competitive option in an expanding number of markets.

The transition still needs grids, flexibility and better financing. Solar has not solved every system problem. But fossil power has lost one of its last simple economic defenses: it is no longer necessarily cheaper to build today and pay for tomorrow

By Leon Stille for Oilprice.com