> However, to store 360 Wh of potential electrical energy, the system requires a storage reservoir of 18 m3, the size of a small room measuring 3x3x2 metres. The authors note that “although the tank size appears very large, it still makes sense for applications in rural areas”. This would light a home for an hour, with LED bulbs and careful usage. And all it requires is a room-sized storage tank. So if I wanted somet…
Ditch the Batteries: Off-Grid Compressed Air Energy Storage
41–50 of 238 posts
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#42I was quite excited by compressed air storage when Lightsail came into the picture almost 5-7 years ago. Sadly, they could not make the economics work and ended up pivoting into a company that sells carbon fibre tanks for high-pressure storage. As someone who follows the energy space closely, Lithium ion batteries now have so much momentum and $$$ pumped into them via R&D work, it's going to be hard for competing ene…
My concern with batteries is we're so gung ho on producing these, we haven't stopped to consider the environmental impact from the manufacturing process or the incredible task of recycling these once they've outlived their usefulness. It reminds me a lot of when people pushed plastic for everything in order to save the trees and reduce paper consumption. Some 40 years later, we're now trying to get off plastic and de…
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#43Earlier quoted context omitted.
My knowledge of physics is very basic and practical engineering is zero, but storing hydrogen in compressed tanks always seem very impractical to me. It's the most freaking volatile element in the universe. And atomic hydrogen reacts with pretty much anything. Leakage and corrosion. From my armchair perspective, storying it in chemical bonds (like nature does) makes a lot more sense.
It would be great if there was a (safe, efficient) way to store electricity in ethanol - but it seems that the process is not very efficient and requires carbon monoxide as input, which is not very safe at offgrid-home scale. That is, unless electricity is used to light corn crops. Still not very efficient.
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#44Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#45Earlier quoted context omitted.
Nah, there's water-based computers, there could be compressed air computers. Picturing the different logic gates running on compressed air is a hoot.
You should check out Ted Chiang’s story “Exhalation.”
http://www.nightshadebooks.com/Downloads/Exhalation%20-%20Te...
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#46> However, to store 360 Wh of potential electrical energy, the system requires a storage reservoir of 18 m3, the size of a small room measuring 3x3x2 metres. The authors note that “although the tank size appears very large, it still makes sense for applications in rural areas”. This would light a home for an hour, with LED bulbs and careful usage. And all it requires is a room-sized storage tank. So if I wanted somet…
I thought this too, but read the rest of the article. Spoiler alert: State of the art is 30x better
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#47> However, to store 360 Wh of potential electrical energy, the system requires a storage reservoir of 18 m3, the size of a small room measuring 3x3x2 metres. The authors note that “although the tank size appears very large, it still makes sense for applications in rural areas”. This would light a home for an hour, with LED bulbs and careful usage. And all it requires is a room-sized storage tank. So if I wanted somet…
Beyond that, this is being pushed in the article as a rural/off-grid approach. For urban residential, it makes a lot more sense to centralize storage and run houses off a regular grid, than to try to make each house an independent entity.
In the medium run, we need to shift the grid itself from the current baseline+peak model to a solar+storage model (rolling wind into this), with distributed metering on the storage grid. Capture solar/wind power when the sun shines and the wind blows, and sell it when consumption outstrips supply, with pricing set dynamically on a distributed network.
Once you have that, for on-grid purposes, we'll probably see a diverse world of storage - car batteries, compressed air, industrial battery sites, water storage, thermal storage, etc.
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#48Lightsail Energy tried and failed to bring this to market - not sure whether this can ultimately outperform Lithium Ion Batteries, which have all the pressure of the electronics industry behind them.
I feel like they have different applications so they're not necessarily competing. Obviously compressed air systems will never have the energy density of a battery, but they could be much more reliable. It also scales up really easily, and I think that's where the sweet spot is - I've heard of people sealing off caves to make giant air storage tanks for these projects.
Re: Ditch the Batteries: Off-Grid Compressed Air Energy Storage
#49I was quite excited by compressed air storage when Lightsail came into the picture almost 5-7 years ago. Sadly, they could not make the economics work and ended up pivoting into a company that sells carbon fibre tanks for high-pressure storage. As someone who follows the energy space closely, Lithium ion batteries now have so much momentum and $$$ pumped into them via R&D work, it's going to be hard for competing ene…
My concern with batteries is we're so gung ho on producing these, we haven't stopped to consider the environmental impact from the manufacturing process or the incredible task of recycling these once they've outlived their usefulness. It reminds me a lot of when people pushed plastic for everything in order to save the trees and reduce paper consumption. Some 40 years later, we're now trying to get off plastic and de…