We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
And it's still improving at about 5% per year.
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We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
And it's still improving at about 5% per year.
We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
are dendrites why so many people are now burning down their apartment/complex charging their scooters is LiFePo4 immune to dendrite shorts? Or do they happen just don't burn?
We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
A good place to start would be a BMS on individual cells that monitors them for general degradation, unexpected discharge, unexpected temperature changes, and can remove a failing cell from the array.
Ambri was working on large scale batteries which seemed like a pretty good idea (looks like they ran out of money): https://en.wikipedia.org/wiki/Ambri_Inc.
We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
The past 20 years have made lithium ion 2-3x more dense, both because of some chemistry changes and because of better pack level design. And it's still improving at about 5% per year.
We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
I am surprised they didn't point out the literal "killer app" - military drones. Energy density is king for any airborne power source. And dendrite growth during charge/discharge cycling isn't as big a deal for that application (how many times would you need to charge a disposable weapon?)
We need way more research on batteries. People cant ingine what is possible if we make battery 10x energy dense.
I don't think 10x density is possible without getting into nuclear, at least not with the chemistries we know of today, everything at a certain point becomes an explosive. Speaking of nuclear, getting tons of the material that powers mars rovers and putting them in every home would generate enough power for decades... At the cost of being able to build a nuclear bomb in a garage.
I live in western Pennsylvania and have both natural gas and electric service, a roof and 1/3 acre of land to utilize. I would love to get rid of at least one of my utility bills and I’m becoming more interested in decoupling from the electric grid than natural gas service. I dream of a future where competition comes to monopoly utilities by way of direct competition with each other as there is a not so far off future where I can utilize solar, batteries and a natural gas fuel cell to cut ties with my Electric Utility. If that kind of competition can exist then the game is on for those utilities to start fighting for customers.
Tangential to the main article point but… The energy density scatter plot is physically correct but misleading and everyone makes this mistake. From an engineering point of view you have to use work delivered at the end of the drive train not fuel raw energy content. When you do that lithium ion batteries compare more favorably to liquid fuels. That’s because the conversion path is more than 90% efficient. For ICE en…
For example, no need to build natural gas infrastructure to every home. Use induction stoves (or electric coil -- already 67% of homes). Heat pump water heater instead of gas. And heat pump for HVAC.
If all energy bills are consolidated as electricity (instead of gas, natural gas and electricity), most people would install solar on their rooftops, buy EVs, and save ~$1000/month on energy bills.