"People have been telling stories about renewable energy since the nineteen-seventies, when the first all-solar-powered house opened on the campus of the University of Delaware, drawing a hundred thousand visitors in 1973, its first year, to marvel at its early photovoltaic panels and its solar hot-water system, complete with salt tubs in the basement to store heat overnight. But, even though we’ve got used to seeing solar panels and wind turbines across the landscape in the intervening fifty years, we continue to think of what they produce as “alternative energy,” a supplement to the fossil-fuelled power that has run Western economies for more than two centuries. In the past two years, however, with surprisingly little notice, renewable energy has suddenly become the obvious, mainstream, cost-efficient choice around the world. Against all the big bad things happening on the planet (and despite all the best efforts of the Republican-led Congress in recent weeks), this is a very big and hopeful thing, which a short catalogue of recent numbers demonstrates:

  • It took from the invention of the photovoltaic solar cell, in 1954, until 2022 for the world to install a terawatt of solar power; the second terawatt came just two years later [in 2024], and the third will arrive either later this year or early next [in 2025 or early 2026].
  • That’s because people are now putting up a gigawatt’s worth of solar panels, the rough equivalent of the power generated by one coal-fired plant, every fifteen hours. Solar power is now growing faster than any power source in history, and it is closely followed by wind power—which is really another form of energy from the sun, since it is differential heating of the earth that produces the wind that turns the turbines.
  • Last year, ninety-six per cent of the global demand for new electricity was met by renewables, and in the United States ninety-three per cent of new generating capacity came from solar, wind, and an ever-increasing variety of batteries to store that power.
  • In March, for the first time, fossil fuels generated less than half the electricity in the U.S. In California, at one point on May 25th, renewables were producing a record hundred and fifty-eight per cent of the state’s power demand. Over the course of the entire day, they produced eighty-two per cent of the power in California, which, this spring, surpassed Japan to become the world’s fourth-largest economy.
  • Meanwhile, battery-storage capability has increased seventy-six per cent, based on this year’s projected estimates; at night, those batteries are often the main supplier of California’s electricity. As the director of reliability analysis at the North American Electric Reliability Corporation put it, in the CleanTechnica newsletter, “batteries can smooth out some of that variability from those times when the wind isn’t blowing or the sun isn’t shining.” As a result, California is so far using forty per cent less natural gas to generate electricity than it did in 2023, which is the single most hopeful statistic I’ve seen in four decades of writing about the climate crisis.
  • Texas is now installing renewable energy and batteries faster than California; in a single week in March, it set records for solar and wind production as well as for battery discharge. In May, when the state was hit by a near-record-breaking early-season heat wave, air-conditioners helped create a record demand on the grid, which didn’t blink—more than a quarter of the power came from the sun and wind. Last week’s flooding tragedy was a reminder of how vulnerable the state is to extreme weather, especially as water temperatures rise in the Gulf, producing more moisture in the air; in late June, the director of the state’s utility system said that the chances of emergency outages had dropped from sixteen per cent last summer to less than one per cent this year, mostly because the state had added ten thousand megawatts of solar power and battery storage. That, he said, “puts us in a better position.”
  • All this is dwarfed by what’s happening in China, which currently installs more than half the world’s renewable energy and storage within its own borders, and exports most of the solar panels and batteries used by the rest of the world. In May, according to government records, China had installed a record ninety-three gigawatts of solar power—amounting to a gigawatt every eight hours. The pace was apparently paying off—analysts reported that, in the first quarter of the year, total carbon emissions in China had actually decreased; emissions linked to producing electricity fell nearly six per cent, as solar and wind have replaced coal. In 2024, almost half the automobiles sold in China, which is the world’s largest car market, were full or hybrid electric vehicles. And China’s prowess at producing cheap solar panels (and E.V.s) means that nations with which it has strong trading links—in Asia, Africa, South America—are seeing their own surge of renewable power.
  • In South America, for example, where a decade ago there were plans to build fifteen new coal-fired power plants, as of this spring there are none. There’s better news yet from India, now the world’s fastest-growing major economy and most populous nation, where data last month showed that from January through April a surge in solar production kept the country’s coal use flat and also cut the amount of natural gas used during the same period in 2024 by a quarter. But even countries far from Beijing are making quick shifts. Poland—long a leading coal-mining nation—saw renewable power outstrip coal for electric generation in May, thanks to a remarkable surge in solar construction. In 2021, the country set a goal for photovoltaic power usage by 2030; it has already tripled that goal.
  • Over the past fifteen years, the Chinese became so skilled at building batteries—first for cellphones, then cars, and now for entire electric systems—that the cost of energy storage has dropped ninety-five per cent. On July 7th, a round of bidding between battery companies to provide storage for Chinese utilities showed another thirty per cent drop in price. Grid-scale batteries have become so large that they can power whole cities for hours at a time; in 2025, the world will add eighty gigawatts of grid-scale storage, an eightfold increase from 2021. The U.S. alone put up four gigawatts of storage in the first half of 2024.

There are lots of other technologies vying to replace fossil fuels or to reduce climate damage: nuclear power, hydrogen power, carbon capture and storage; along with renewables, all were boosted by spending provisions in Biden’s Inflation Reduction Act and will be hampered to varying degrees by congressional rollbacks. Some may prove useful in the long run and others illusory, but for now they are statistically swamped by the sheer amount of renewable power coming online. Globally, roughly a third more power is being generated from the sun this spring than last. If this exponential rate of growth can continue, we will soon live in a very different world.

All this suggests that there is a chance for a deep reordering of the earth’s power systems, in every sense of the word “power,” offering a plausible check to not only the climate crisis but to autocracy. Instead of relying on scattered deposits of fossil fuel—the control of which has largely defined geopolitics for more than a century—we are moving rapidly toward a reliance on diffuse but ubiquitous sources of supply. The sun and the wind are available everywhere, and they complement each other well; when sunlight diminishes in the northern latitudes at the approach of winter, the winds pick up. This energy is impossible to hoard and difficult to fight wars over. If you’re interested in abundance, the sun beams tens of thousands of times more energy at the earth than we currently need. Paradigm shifts like this don’t come along often: the Industrial Revolution, the computer revolution. But, when they do, they change the world in profound and unpredictable ways...

In retrospect, it’s reasonably easy to see how fast solar and wind power were coming. But, blinkered by the status quo, almost no one actually predicted it. In 2009, the International Energy Agency predicted that we would hit two hundred and forty-four gigawatts of solar capacity by 2030; we hit it by 2015. For most of the past decade, the I.E.A.’s five-year forecasts missed [underestimated the amount of renewables] by an average of two hundred and thirty-five per cent. The only group that came even remotely close to getting it right was not J. P. Morgan Chase or Dow Jones or BlackRock. It was Greenpeace, which estimated in 2009 that we’d hit nine hundred and twenty-one total gigawatts by 2030. We were more than fifty per cent above that by 2023. Last summer, Jenny Chase, who has been tracking the economics of solar power for more than two decades for Bloomberg, told the Times, “If you’d told me nearly 20 years ago what would be the case now, 20 years later, I would have just said you were crazy. I would have laughed in your face. There is genuinely a revolution happening.”

-via The New Yorker, July 9, 2025

The enshittification of solar (and how to stop it)

If you'd like an essay-formatted version of this post to read or share, here's a link to it on pluralistic.net, my surveillance-free, ad-free, tracker-free blog:

I'm only a few chapters into Bill McKibben's stupendous new book Here Comes the Sun: A Last Chance for the Climate and a Fresh Chance for Civilization and I already know it's going to change my outlook forever:

McKibben is one of our preeminent climate writers and activists, noteworthy for his informed and brilliant explanations of the technical limits – and possibilities – of various climate interventions, and for his lifelong organizing work.

Here Comes the Sun is a capstone on several years' worth of surprising, infuriating and inspiring newsletter articles, particularly about the unheralded, unanticipated, and unbelievable growth of solar. Everything else might be utterly fucked, but solar is going great.

In McKibben's telling, everything about solar is going better than anticipated. Solar efficiency is increasing exponentially with prices falling through the floor. The material bill for solar is also in freefall. Everything surrounding solar is going amazing, too. Battery capacity is improving even faster than solar generation, and the best new batteries use the incredibly abundant element sodium (not lithium) to store those useful electrons. Long-haul transmission lines are crisscrossing the world.

Hyper-reliable electric cars keep getting cheaper, and the batteries are lasting much longer than we used to think they would. Some of these vehicles are nigh-miraculous, from the ebikes that get 5 miles to the penny, to the world's heaviest EV, a dump truck that shuttles to a quarry atop a hill where it is loaded with rocks, then regeneratively brakes its way back down the hill, accumulating enough charge to get back up to the top again (a perpetual motion machine!). Heat pumps and induction tops are actually more efficient than burning natural gas – in other words, it's cheaper to convert sunshine into electrons and electrons into heat than it is to just burn gas:

Then there's the capacity. China's solar capacity growth is insane – the solar equivalent of a new coal plant is coming online every eight hours. But it's even more intense in poor regions of the global south, like in Pakistan, where a legion of installers have learned their craft from Tiktok videos set to songs from popular musical films, leading to one of the most rapid electrification rollouts in human history. The closer a country is to the equator, the more sense solar makes, of course, so solar is sweeping some of the poorest countries in the world, liberating them from the need to attract foreign currency they can use to buy dollar-denominated barrels of oil.

Everything we thought would be a solar bottleneck turns out to be a feature, not a bug. Perhaps you've heard that solar is unsustainable because it competes for agricultural land, making starvation the price of clean energy. Wrong: solar provides shade for many crops that have been withering in the soaring heat of a climate-wracked world, and limits evaporation, reducing the amount of water needed to produce food crops. What's more, the cooling effect of that soil-retained moisture helps keep the shade-providing solar panels within their optimal operating temperature, increasing the efficiency of their power generation. And of course, every time someone switches from hydrocarbon fuels to solar, they reduce the demand for ethanol, and a third of America's corn goes into making this stupid, wasteful fuel additive (and corn is America's most prolific crop). That's land that can be given over to growing useful food crops. Solar is increasing our agricultural yields, not competing for farmland.

Then there's the material bill for solar: a recurring (and legitimate, and worthwhile) concern about electrification is that it comes with a vast material bill that will necessitate massive extraction projects. There's good reason to worry that the copper, lithium and conflict minerals needed for planetary solarization will come at the expense of the despoilation of habitat, the poisoning of indigenous people, and the ruination of miners.

Happily, this, too is turning out to be a tractable problem. First off, because the material bill for solarization just isn't that big when compared to the amount of fossil fuels we consume every year. To create the batteries we need to keep the whole world's lights on when the sun goes down and the wind stops blowing, we will need to extract one seventeenth of the amount of minerals we burn every year in the fossil fuel system:

And while some of those materials will have to be replaced – necessitating more extraction – most of them can be recycled. The biggest bottleneck in recycling complex manufactured products like batteries is that it's energy intensive, but solar makes energy cheap. We're starting to see solar-powered solar-panel recycling operations that recover 99% of the materials in used up and superannuated solar panels, and use those materials to make new, modern, super-efficient solar panels:

And holy smokes is solar going to provide us with lot of cheap energy. Materials scientist Deb Chachra's book How Infrastructure Works estimates that we could give every person in the world the energy budget of a Canadian (like an American, only colder) by harvesting 0.4% of the solar rays that strike the Earth's surface:

The last time I spoke with Deb, she waxed lyrical about how all that too-cheap-to-meter energy will make it possible to recover materials from old energy systems that weren't designed to be broken down and re-integrated into the material stream at their end-of-life, and how it will also allow us to economically make new devices that are designed to be broken down and re-used when their duty-cycles end.

Solar is a technology, not a fuel. Every generation of it is cheaper and better. There's so much low-hanging fruit for solar conversion. In Saul Griffith's Electrify, he offers lists of simple, tried and tested tweaks to safety codes that dramatically reduce the cost of installing and maintaining solar:

That's the good news. You probably know about the bad news: Donald Trump explicitly promised the fossil fuel industry legislation that he would kill renewables if they donated $1b to his campaign, which they did:

He's doing his damnedest to make good on his promises, with incredibly wasteful, job-killing project cancellations:

But, as McKibben told David Sirota in a recent Lever Time podcast, reality has a stubborn pro-renewables bias:

Money talks and bullshit walks. When Texas Republicans introduced state legislation requiring power companies to install a new fossil fuel plant every time they added new solar capacity, the bill died in a roar of opposition from rural, Trump-voting Texans who didn't want "DEI for natural gas":

There's nothing about renewables that cuts against the aesthetics or values of the conservative movement. Generating your own power on the roof of your own homestead (or with a clip-on panel attached to your apartment balcony) is fully compatible with the ideal of a sovereign individual, not beholden to a government-regulated power monopoly.

Solar also fits neatly within the idea of Christian Dominionism, that "God gave man all the things of the Earth." An existence dependent on setting fire to a dwindling supply of critters that died millions of years ago leaves a lot of value on the table. If God wants us to breed chickens to have vast drumsticks and breasts, why wouldn't He want us to capture the hyperabundant sunshine He sends our way every morning at dawn? Why would we limit ourselves to this inefficient, inconvenient and expensive ancient garbage?

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UK to legalise "plug-in solar"

It has been illegal for a while because the National Grid needed upgrades to be able to handle it, but the UK government announced today that it will be made legal.

Announcing that “plug-in solar”, low cost solar panels that families can buy at supermarkets and put on their balconies or outdoor space, will be made available in the UK for the first time. [...] The portable, plug-in solar panels can be placed in gardens or on walls and balconies – providing a new, simple alternative for renters and flat owners who may not have the option of rooftop solar. The free solar power can then be safely plugged into a mains socket like any other device, at no extra cost – thereby reducing the amount of electricity taken from the grid and cutting energy bills.

Monthly Good News Roundup for January! 🎉🩵

Long time no see! 👋🏽 January flew by — but let’s not gloss over some of its good news headlines! Let’s wrap up the first month of 2026 with five good news stories from January! 🎉✨

1. ☀️ Cheap solar power is changing lives and economies across Africa!

With Chinese solar panels becoming increasingly affordable, solar panel usage has been increasing rapidly among businesses and families in countries like South Africa, Sierra Leone, and Chad. Across the continent, solar imports from China rose 50% over the first 10 months of 2025!

2. 🏳️‍⚧️ Anti-trans provisions have been removed from federal funding bills in the U.S.!

A series of anti-LGBTQ+ measures have been slashed, which would have implemented limitations for federal funding for gender-affirming care, college trans athletes, and support measures for trans youth in K-12 schools. That’s not all that succeeded with this bill — it also included increased funding for HIV/AIDS programs and initiatives!

3. 🫎 A project to reintroduce elk to the UK is moving forward!

Once a native species in the UK and a keystone species in UK wetlands, they became extinct 3,000 years ago due to hunting — the project, which has now secured £15,000 of funding, aims to start feasibility studies into the species’ return, a significant step towards reintroduction! With other reintroduction projects having proved successful — beavers, as an example, having returned successfully to the country for the first time in 400 years — wildlife experts aim to see the elks’ return bring similar benefits to the local environment!

4. 🌴 Indonesia plans to fine palm oil companies and miners operating illegally in forests!

Identifying $8.5 billion in potential fines that the government could collect, the country’s forestry task force has increasingly cracked down on plantations and mines in forest areas. As a disturbance to the palm oil industry, the task force has already seized over 9.8 million acres or 4.1 million hectares of illegal plantations and mines — an area about the size of the Netherlands!

5. 🏔️ A vast 133,000 hectares (328,000 acres) of Chilean Patagonia have been preserved after local fundraising!

Home to 11% of the last remaining alerce forests on Earth, the wild valley was purchased thanks to a successful grassroots campaign led by the NGO Puelo Patagonia, protecting the ecosystem from logging, damming, and development. Over 380 times the size of Manhattan’s Central Park and 800 times as big as London’s Regent’s Park, the area’s wildlife, waters, and flora (some among the world’s oldest trees!) are now conserved for generations to come! (This story is technically from December – but any good news is good news, right? 😅)

A new study tracked 1,044 interactions at a tidal energy site and found a 98% safety rate for fish, with ZERO collisions for seals or seabirds. It turns out that marine animals are smart enough to avoid the turbines. This groundbreaking data could unlock the potential of tidal energy to power millions of homes.