World's First Battery Fueled By Air
Hugh Pickens writes "The Telegraph reports on the revolutionary 'STAIR' (St Andrews Air) battery could now pave the way for a new generation of electric cars, laptops and mobile phones. The cells are charged in a traditional way but as power is used an open mesh section of battery draws in oxygen from the surrounding air that reacts with a porous carbon component inside the battery, which creates more energy and helps to continually 'charge' the cell as it is being discharged. The battery has a greater storage capacity than other similar-sized cells and can emit power up to 10 times longer. 'The key is to use oxygen in the air as a re-agent, rather than carry the necessary chemicals around inside the battery,' says Professor Peter Bruce of the Chemistry Department at the University of St Andrews. 'Our target is to get a five to ten fold increase in storage capacity, which is beyond the horizon of current lithium batteries.'"
Would there be any danger of using this in a confined space? Any clue on how much oxygen this thing is churning through?
See my journal for slashdot ID's by year. Mine created in 2005. http://slashdot.org/journal/289875/slashdot-ids-by-year
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Extending the life of batteries using the air sounds like a great thing. But what is the hidden problem that we are overlooking here? Will the chemical reaction of the battery and oxygen deplete the batteries faster than standard LIon? Are the batteries heavier? Output less power? Require usage patterns that aren't typical for normal users?
It just sounds too good to be true.
We have zinc-air elements for decades now, but they are not rechargeable.
Zinc-air batteries have been in use for a long, long time. These were especially popular in miniature hearing aids.
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Certainly not the first air based battery. Zinc air and Aluminum air batteries exist. Both were evaluated for use in electric cars with zinc-air being the most favorable. Problem is that it's not rechargeable. The idea, as it was developed, was that you would "burn" your zinc fuel load (creating zinc oxide), then exchange the zinc oxide paste for a new load of zinc fuel. The zinc would be recycled via electrolysis for re-use. Clearly this plan is somewhat convoluted, and not worth persuing if high density rechargeable Li-ion batteries are available.