Earlier quoted context omitted.
Why wasn't the flushing automated? edit: I have worked on many RO systems and we always did auto flushing and I am not sure I ever saw anything other than that. It was pharma though.
Likely the issue is, with a large RO plant you hire people for the specific domain knowledge and develop a work culture around it. For a place like an oil rig none of this specific domain knowledge is central to the work at hand. So the technology isn't reliable in that context.
UK researchers create graphene-based sieve that can remove salt from seawater
41–50 of 117 posts
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#42I swear I've heard about this before... is this one of those stories that emerges about a technology that never seems to enter the market? That "super slick" coating for condiment container interiors is another that springs to mind.
Desalinization is already with about a factor of 2 or 3 of the thermodynamic optimum, so improvements can't be revolutionary. Desalinization mostly needs cheap clean energy.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#43I swear I've heard about this before... is this one of those stories that emerges about a technology that never seems to enter the market? That "super slick" coating for condiment container interiors is another that springs to mind.
Desalinization is already with about a factor of 2 or 3 of the thermodynamic optimum, so improvements can't be revolutionary. Desalinization mostly needs cheap clean energy.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#44I swear I've heard about this before... is this one of those stories that emerges about a technology that never seems to enter the market? That "super slick" coating for condiment container interiors is another that springs to mind.
Desalinization is already with about a factor of 2 or 3 of the thermodynamic optimum, so improvements can't be revolutionary. Desalinization mostly needs cheap clean energy.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#45Earlier quoted context omitted.
Why wasn't the flushing automated? edit: I have worked on many RO systems and we always did auto flushing and I am not sure I ever saw anything other than that. It was pharma though.
Likely the issue is, with a large RO plant you hire people for the specific domain knowledge and develop a work culture around it. For a place like an oil rig none of this specific domain knowledge is central to the work at hand. So the technology isn't reliable in that context.
To set some context that people here might appreciate, there wasn't a single computer or data link to offshore drilling rigs at that time. We were just starting to play with radio modem links.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#46I swear I've heard about this before... is this one of those stories that emerges about a technology that never seems to enter the market? That "super slick" coating for condiment container interiors is another that springs to mind.
If this is made the makers better warn first or that ketchup is going to fly out like a rocket.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#47Re: UK researchers create graphene-based sieve that can remove salt from seawater
#48we have experienced droughts in Puerto Rico. this could likely lower our water prices as well. http://www.noticel.com/noticia/177413/la-sequia-es-para-larg...
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#49Earlier quoted context omitted.
Desalinization is already with about a factor of 2 or 3 of the thermodynamic optimum, so improvements can't be revolutionary. Desalinization mostly needs cheap clean energy.
Even with forward osmosis?
> Based on thermodynamic principles and practical kinetic requirements, the theoretical minimal energy for desalination with FO is always higher than that without FO. In other words, using FO cannot reduce the minimum energy of separation.
https://www.researchgate.net/profile/Shihong_Lin/publication...
The idea behind forward osmosis is to replace the salt in water with some other solute, like sugar. A strict 1-particle-to-1-particle replacement can (I think) have arbitrarily low free energy cost, but then you're just stuck with sugar water instead of salt water. In certain special cases this is fine (like for emergency water generation at sea, when you don't mind drinking sugar water). Insofar as low levels of sugar can't be tasted, and insofar as you have access to free sugar, you can avoid the energetic cost of removing some of the salt by replacing it with sugar. But I don't think this is very much before it becomes noticeable, and sugar isn't free.
If you happen to have excess thermal energy from some source, there are also ways to harvest some of this using forward osmosis, but this is really just another way to smuggle in free energy. In principle, you could use the heat gradient to generate electricity and then use that to power normal reverse osmosis, although which is more efficient will depend on the details of your equipment losses.
Re: UK researchers create graphene-based sieve that can remove salt from seawater
#50tl;dr: A material was produced on a very small scale, which, with no regard to the energy required, might be able to remove 97% of the salinity. I.e. science-ey click-bait with a bullshit title.
1. This is the BBC. They aren't a clickbait site. 2. I count about 12 words you can fit into the title. How else can you adequately describe what the article was about ? Their choice seems completely reasonable. 3. The scale and energy required are irrelevant. The article wasn't describing a fully fledged product it was discussing a concept.