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Aspiring Equal Oppertunity Feminist Granola girl.

@princess-unipeg / princess-unipeg.tumblr.com

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  • "A 1-megawatt sand battery that can store up to 100 megawatt hours of thermal energy will be 10 times larger than a prototype already in use.
  • The new sand battery will eliminate the need for oil-based energy consumption for the entire town of town of Pornainen, Finland.
  • Sand gets charged with clean electricity and stored for use within a local grid.

Finland is doing sand batteries big. Polar Night Energy already showed off an early commercialized version of a sand battery in Kankaanpää in 2022, but a new sand battery 10 times that size is about to fully rid the town of Pornainen, Finland of its need for oil-based energy.

In cooperation with the local Finnish district heating company Loviisan Lämpö, Polar Night Energy will develop a 1-megawatt sand battery capable of storing up to 100 megawatt hours of thermal energy.

“With the sand battery,” Mikko Paajanen, CEO of Loviisan Lämpö, said in a statement, “we can significantly reduce energy produced by combustion and completely eliminate the use of oil.”

Polar Night Energy introduced the first commercial sand battery in 2022, with local energy utility Vatajankoski. “Its main purpose is to work as a high-power and high-capacity reservoir for excess wind and solar energy,” Markku Ylönen, Polar Nigh Energy’s co-founder and CTO, said in a statement at the time. “The energy is stored as heat, which can be used to heat homes, or to provide hot steam and high temperature process heat to industries that are often fossil-fuel dependent.” ...

Sand—a high-density, low-cost material that the construction industry discards [Note: 6/13/24: Turns out that's not true! See note at the bottom for more info.] —is a solid material that can heat to well above the boiling point of water and can store several times the amount of energy of a water tank. While sand doesn’t store electricity, it stores energy in the form of heat. To mine the heat, cool air blows through pipes, heating up as it passes through the unit. It can then be used to convert water into steam or heat water in an air-to-water heat exchanger. The heat can also be converted back to electricity, albeit with electricity losses, through the use of a turbine.

In Pornainen, Paajanen believes that—just by switching to a sand battery—the town can achieve a nearly 70 percent reduction in emissions from the district heating network and keep about 160 tons of carbon dioxide out of the atmosphere annually. In addition to eliminating the usage of oil, they expect to decrease woodchip combustion by about 60 percent.

The sand battery will arrive ready for use, about 42 feet tall and 49 feet wide. The new project’s thermal storage medium is largely comprised of soapstone, a byproduct of Tulikivi’s production of heat-retaining fireplaces. It should take about 13 months to get the new project online, but once it’s up and running, the Pornainen battery will provide thermal energy storage capacity capable of meeting almost one month of summer heat demand and one week of winter heat demand without recharging.

“We want to enable the growth of renewable energy,” Paajanen said. “The sand battery is designed to participate in all Fingrid’s reserve and balancing power markets. It helps to keep the electricity grid balanced as the share of wind and solar energy in the grid increases.”"

-via Popular Mechanics, March 13, 2024

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Note: I've been keeping an eye on sand batteries for a while, and this is really exciting to see. We need alternatives to lithium batteries ASAP, due to the grave human rights abuses and environmental damage caused by lithium mining, and sand batteries look like a really good solution for grid-scale energy storage.

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Note 6/13/24: Unfortunately, turns out there are substantial issues with sand batteries as well, due to sand scarcity. More details from a lovely asker here, sources on sand scarcity being a thing at the links: x, x, x, x, x

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adrift-at-c

They are specifically using sand from non-scarce sources that aren't suitable for construction.

The only thing sand in a sand battery needs to do is get hot and stay hot. Strictly speaking, you could use nearly anything from hot oil, to thermal salts, to a pile of rocks, to molten aluminum as the medium for a thermal battery (a sand battery is a kind of thermal battery). You could use basically any kind of rock ground into powder for a sand battery.

The company mentioned here wants to use mine waste in their batteries (though it's not clear if that's what they used in this battery).

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“Experts are calling time on the fossil age as new analysis shows wind and solar power produced a record amount of the world’s electricity last year.The renewables generated 12 per cent of global electricity in 2022, up from 10 per cent the previous year, according to the report from clean energy think tank Ember.And while a small increase in coal burning pushed electricity emissions up to an all-time high, analysts predict this will be the peak of pollution.”

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wlwaluigi
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qpeople

[ID: two comic panels, the first of a person laying on a therapy couch, and the second of them sitting up and looking over their shoulder saying, "oh shit, for real?" end ID]

it gets even cooler, because the algae didnt stop working at 6 months, thats just when they detatched the microprocessor - it was still producing currents after that!!! the article below is an update saying that it has been running for a year now, and it might run indefinitely: "Our photosynthetic device doesn't run down the way a battery does because it's continually using light as the energy source."

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“Is it possible to turn things around by 2050? The answer is absolutely yes,” says Kai Chan, a professor at the Institute for Resources, Environment and Sustainability at the University of British Columbia.

Many scientists have been telling us how the world will look like, if we don’t act now. However, others, like Chan, are tracking what success might look like.

They are not simply day-dreamers either. They aren’t being too optimistic. They are putting together road maps for how to safely get to the planet envisioned in the 2015 Paris Agreement, where temperatures hold at 1.5 degrees Celsius higher than before we started burning fossil fuels, this article from July states.

“Three decades is enough to do a lot of important things. In the next few years—if we get started on them—they will pay dividends in the coming decades,” says Chan, the lead author of the chapter on achieving a sustainable future in a recent UN report that predicted the possible extinction of a million species.

Making these changes won’t mean years of being poor, cold and hungry before things get comfortable again, the scientists insist. They say that if we start acting seriously NOW, we stand a decent chance of transforming society without huge disruption. 

No doubt, it will take a massive switch in society’s energy use. But without us noticing, that’s already happening. Not fast enough, maybe, but it is. Solar panels and offshore wind power plummet in price.  Iceland and Paraguay have stripped the carbon from their grids, according to a new energy outlook report from Bloomberg. Europe is on track to be 90 per cent carbon-free by 2040. And Ottawa says that Canada is already at 81 per cent, thanks to hydro, nuclear, wind and solar. 

Decarbonizing the whole economy is within grasp. We can do this.

“If we have five years of really sustained efforts, making sure we reorient our businesses and our governments toward sustainability, then from that point on, this transition will seem quite seamless. Because it will just be this gradual reshaping of options,” Chan says, adding: “All these things seem very natural when the system is changing around you.”

Hoping people with more relevant knowledge and science parsing skills than I do might comment on this …

I think it is absolutely vital that people be able to picture The Healed World. Honestly I think it’s one of the most important things we can do.

Look at how many different apocalypses people can visualise. Our brains can freely feast on unlimited scenes of scarcity, competition and fear. Everywhere we turn we can consume endless content about killing our neighbors for scraps, about hurting children, about bleak planets and extinction, and lots and lots of guns. It is easy, accessible and cheap. Our minds gobble up as much of this content as the market generates and the market gleefully generates more. We feed and feed upon a future of suffering and loss. We feast on images of brown children being hurt, unnecessarily, and say smugly that “that’s just what humanity is like.” Our brains are programmed away from the natural human responses to crises (fix it, help each other, rebuild and hope) and TOWARDS the mindsets of fictional apocalypse (cause it, turn on each other [it’s just what humans do! We’ve all seen the same stories!], collapse, fight each other for crumbs, the world is doomed anyway.)

It’s pretty unnecessary. And frankly pretty cringe. Imagine being part of some of the most prosperous, empowered, educated, connected group of humans to ever exist, and having a brain that can only picture the future as apocalypse-movie.

And where is the food of abundance, equality, beauty, hope, diversity? Where is the actual food of the future? Oh. It’s in, like, three solarpunk anthologies, huh?

Huh.

Anyway not to get all Amitav Ghosh on main but we have GOT to address this unnecessary and EMBARRASSING failure of imagination. Because we are the generation currently failing in our responsibilities as caretakers of the earth, because of this deranged inability to picture the world as being a real place, and the future being a place where people will live.

So, basically, yes, let’s just say it and start saying it regularly. The work is now and we have to do it. It isn’t impossible. Yes there is hope. Yes it can all be done. Yes there is a future for fucksake. It’s within our grasp. that is what futures are.

Thinking About the healed world again

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