Indefinite storage of solar power via MIT
cleantechnica.com
cleantechnica.com
That last bit was the most interesting part of the article to me. I've read and studied a fair amount about number crunching to try and figure out the behavior of proteins, but I haven't heard about anyone trying that in reverse and just throwing random chemicals in a simulation and seeing if they have the desired properties. It seems like that sort of chemical simulation for material science would predate folding at home and the like.
Let's get real - Ruthenium is about US$5500 per kilogram. You can buy the best lithium batteries on the market for significantly less.
http://www.merriam-webster.com/dictionary/breakthrough
3a : a sudden advance especially in knowledge or technique
That they know what to look for now is very much a breakthru, just a "knowledge" one rather than a "technique" one.
> Let's get real - Ruthenium is about US$5500 per kilogram. You can buy the best lithium batteries on the market for significantly less.
Doesn't matter. They actually understand what's going on to some degree, well enough that now they can just throw supercomputer time at it for a while. Maybe they'll find something useful, maybe they'll show that there isn't anything useful.
Our tank losses are nonzero, but in the scheme of things, not all that huge, either. So for it to become cost effective, this storage would have to compete with basically water and glycol in cheap, unpressurized tanks.
* It stores energy from light, at 350nm (near UV)
* It releases energy when catalyzed or heated (barrier is 30 kcal/mol)
* It stores 0.2 MJ/Kg (vs. 0.5 MJ/Kg for lithium ion batteries)
* Using iron instead of ruthenium lowers the energy barrier for returning to the ground state, enough that it's useless at normal temperaturesWould i be correct in thinking that this probably makes it less useful? Current thermal collectors use absorbent coatings that are "full-spectrum," with a minimum of IR emission, which i have to imagine contributes to their really high efficiencies.
A line from "The Last Question" by Issac Asimov.
“to use a combination of simulation, chemical intuition, and databases of tens of millions of known molecules to look for other candidates that have structural similarities and might exhibit the same behavior.”
I don't see how that's "wishful thinking" or "faith-based" or anything like that.
The mechanisms that plants (and animals) use for chemically storing energy are useful for living things, but aren't all that great for long-term, large-scale energy storage. In some sense, we already use plants like that (biodiesel) and, in general, it sucks.
Oh, I missed that part. Very important difference, thanks!