Why do we usually utilize science to fix the wrong problem? Shouldn't we be making more efforts on 1) Growing more trees 2) Reducing environmental pollution 3) Controlling human population ???
There's more than 8 000 000 000 of us, if everybody were just doing the thing with the greatest priority it would be very ineffective division of work. Like digging one hole with 1000 people. As a humanity we can (and should) multitask, especially when it comes to science and inventions, because you never know which seemingly pointless path can lead you to a great breakthrough. Imagine everybody since antiquity worke…
Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
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Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#52Why do we usually utilize science to fix the wrong problem? Shouldn't we be making more efforts on 1) Growing more trees 2) Reducing environmental pollution 3) Controlling human population ???
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#53Earlier quoted context omitted.
There's more than 8 000 000 000 of us, if everybody were just doing the thing with the greatest priority it would be very ineffective division of work. Like digging one hole with 1000 people. As a humanity we can (and should) multitask, especially when it comes to science and inventions, because you never know which seemingly pointless path can lead you to a great breakthrough. Imagine everybody since antiquity worke…
The population of the world is slightly under 7 billion.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#54Earlier quoted context omitted.
>Additionally their flow rate is 0.4 microlitres per minute, this would equate to needing 625 000 channels for one pass only to get 250mL / min. Scaling for microfluidics isn't simply using a larger pipe size, microfluidic devices largely operate with minimal forces and a Reynolds number of 1, that doesn't hold as you get larger. What about parallelization? Are there any obvious downsides to simply having lots of the…
Yes, parallelization is actually the currently accepted means of increasing throughput, you'll see diagnostic devices with thousands of channels. The reason it isn't appropriate here is because of the complexity, the design is easy, you make a radial pattern of inlets with the splits towards the middle so you can combine outlets of the same type. Construction is relatively easy as well. The problem comes from the num…
The advantage being reverse osmosis is more efficient when the salinity difference is smaller. Still I don't think the added complexity is going to be worth slightly lower energy costs.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#55Earlier quoted context omitted.
There's more than 8 000 000 000 of us, if everybody were just doing the thing with the greatest priority it would be very ineffective division of work. Like digging one hole with 1000 people. As a humanity we can (and should) multitask, especially when it comes to science and inventions, because you never know which seemingly pointless path can lead you to a great breakthrough. Imagine everybody since antiquity worke…
The population of the world is slightly under 7 billion.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#56"The new method requires so little energy that it can run on a store-bought battery." What a silly measurement. I can buy a laptop battery or a car battery at a store. Also it does not give any idea of how much water could be produced from the battery. A teaspoon per battery probably isn't too great. (Although at the moment they get only nanoliters of salty water from it of course).
A similar silly unit is used to measure 'green' energy: "This windmill can power 10.000 households". As if we're too stupid to understand a kWh figure.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#57I 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…
The process doesn't even have to be super efficient Economics are important. We didn't go back to the moon because it was too expensive, and we're not going to see massive-scale desalination because it's also too expensive: http://physics.ucsd.edu/do-the-math/2012/10/the-energy-water... California uses 46 billion gallons of water per day. Supplying 25% of this via desalination would require 36 GW of thermal-equivalen…
I wonder what the water-used-to-calories-produced ratio is for something like lettuce compared to something like corn or beans. I imagine it's a good number of orders or magnitude higher.
In other words, an increase in the price of fresh water does not necessarily significantly increase the price of feeding yourself, it significantly increases the price of water-intensive crops and likely increases the demand for less water intensive crops.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#58We currently have techniques that require no additional power (just using the sun), but almost every desal operation uses a powered method.
Power consumption isn't the only factor here. A low power technique that has throughput per area equivalent to solar stills is just worse than all available alternatives.
If you made a device that turns the briny sludge byproduct into fuel or some other consumable, that would be amazing.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#59Earlier quoted context omitted.
But municipal water typically comes from rain or snowfall. The distillation has already been done.
You wish. No, it usually comes from a river. And guess where the waste water from a sewage treatment plant goes? Right back into the same river, only downstream. And that's where the next city down the line picks it up. That water gets recycled multiple times on the way to the ocean, by each city on the river. That's not a bad thing! But the water can hardly be called distilled.
Re: Chemists Work to Desalt the Ocean for Drinking Water, One Nanoliter at a Time
#60Earlier quoted context omitted.
I had an electrical engineering old timer explain the misconception as the Current Push Theory. (His industrial war stories were pretty good.)
Googling for "Current Push Theory" only gets 5 results, none of them relevant: https://www.google.com/search?num=100&q=%22Current+Push+Theo... Can you please define the Current Push Theory?