[1] http://onlinelibrary.wiley.com/doi/10.1002/anie.201302577/ab...
Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
11–20 of 61 posts
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#12Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#13It would be great if a Solar cell or small panel could power it. That could be a life saver in emergency situations.
A solar panel can run this. Or, to be more specific, a small (3" x 3") solar panel could charge a 3v battery which could power this device. I have solar-powered holiday lights which operate on 3v, this application would be simply replacing the lights with this chip. I've actually replaced the charging circuit with a TI MSP-430[1], and powered it directly with solar power. [1]a microcontroller similar to Arduino which…
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#14I'd love to see an energy-conservation analysis of this technique. How many joules per liter does it actually require?
40 nL of desalted water per minute, for a minute, using 3.0V voltage (from article) and 0.7 A current (standard AA, "store-bought battery" from article), yields 3.2 GJ/L. Even if we give it the benefit of the doubt and say we're overestimating the current by a factor of 100, 32 MJ/L still a ridiculous amount of energy, and ~10x more than just distilling water through evaporation, which is 2.23 MJ/L.
Where did you get that 0.7A number?
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#15Earlier quoted context omitted.
40 nL of desalted water per minute, for a minute, using 3.0V voltage (from article) and 0.7 A current (standard AA, "store-bought battery" from article), yields 3.2 GJ/L. Even if we give it the benefit of the doubt and say we're overestimating the current by a factor of 100, 32 MJ/L still a ridiculous amount of energy, and ~10x more than just distilling water through evaporation, which is 2.23 MJ/L.
The actual paper ( http://libgen.org/scimag5/10.1002/anie.201302577.pdf ) says they manage an efficiency of 25 mWhL^-1 (90 joules per litre) Where did you get that 0.7A number?
To make this technology energetically favourable to boiling, it must not exceed ~700μA in current, and it has to be far less than that to be worth its complexity.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#16Earlier quoted context omitted.
The actual paper ( http://libgen.org/scimag5/10.1002/anie.201302577.pdf ) says they manage an efficiency of 25 mWhL^-1 (90 joules per litre) Where did you get that 0.7A number?
0.7A is the current of the "store bought" (AA) battery, suggested by the article. To make this technology energetically favourable to boiling, it must not exceed ~700μA in current, and it has to be far less than that to be worth its complexity.
Solving for current, Ohm's law is I = V/R. You only deliver .7 amps of current into a 4.285 ohm load.
If you connect a 3 volt battery to a 1,000 ohm resistor, then only 0.003 amps of current will flow, which is 9 milliwatts.
Connect a 3 volt battery to a .01 ohm load (a dead short, almost) and 300 amps of current will flow, (900 watts!) very briefly, until the battery voltage sags under load.
1: Or any voltage source in general, barring some trickery that you can't do with a simple electrochemical battery.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#17does the ocean still clean these days ? very nice job, expect to see it available soon
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#18I'd love to see an energy-conservation analysis of this technique. How many joules per liter does it actually require?
40 nL of desalted water per minute, for a minute, using 3.0V voltage (from article) and 0.7 A current (standard AA, "store-bought battery" from article), yields 3.2 GJ/L. Even if we give it the benefit of the doubt and say we're overestimating the current by a factor of 100, 32 MJ/L still a ridiculous amount of energy, and ~10x more than just distilling water through evaporation, which is 2.23 MJ/L.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#19A floating desalination plant powered by an x000-acre floating solar platform, pumping clean water back to shore, and dispersing slightly saltier water across a wide area, doesn't seem like science fiction to me, and doesn't seem very destructive. The process doesn't even have to be super efficient, we may even end up using old-school techniques like distillation or electrolysis to keep the mechanisms simple.
(granted this helps coastal regions more than inland ones, but moving population-heavy coastal areas to this system will preserve more of the natural water supplies for the inland needs).
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#20I don't put much stock in those who make claims like "the next world war will be over water", because we have a massive supply of water (the ocean) and a massive supply of energy (the sun) to power whatever we need to do to make it drinkable. A floating desalination plant powered by an x000-acre floating solar platform, pumping clean water back to shore, and dispersing slightly saltier water across a wide area, doesn…