Earlier quoted context omitted.
Desalination is cheap in day to day terms, it’s the scale of water we use that’s the issue. Sure, we can get ~1,000 gallons of drinking water for 3$ via desalination. That works out to a monthly water bill increase of ~45$ for a family of 5. Unfortunately, crops need incredible amounts of water. So, growing corn etc with desalination would case food prices to ~quadruple.
Since seaweed can grow on salt water, can we perhaps engineer other crops to do the same?
Scientists cook up new recipes for taking salt out of seawater
31–40 of 52 posts
Re: Scientists cook up new recipes for taking salt out of seawater
#32Steam is not required for MED. Hot water ORC driving RO seems to be most efficient in some situations " rel="nofollow">https://www.mdpi.com/1099-4300/17/11/7530>, but MED is a simple, no-moving-parts solution that is also efficient.
Re: Scientists cook up new recipes for taking salt out of seawater
#33Earlier quoted context omitted.
Sewage and distribution is not included in these costs. Current systems get water for almost nothing it’s mostly distribution and sewage systems that you’re currently paying for. As to why this is, a single pipe carrying 1,000x as much water costs no where near 1,000x much per foot. Each home might only need 1/10,000,000 the water, but it’s got to be built for peak demand not average useage. On top of this, people do…
None of this is at all relevant to my point. SFPUC charges over $4/ccf for wholesale water. This does not include distribution costs, and this is paid regardless of whether the water is sold, leaks, or is used for firefighting. If SFPUC’s wholesale customers purchased desalinated water and managed to escape their SFPUC contracts, they would eliminate this expense. edit: http://bawsca.org/water/rates/wholesale
https://sfwater.org/modules/showdocument.aspx?documentid=774...
Wholesale untreated water is 1.02$ per 1,000 gallons. Page 16: ( 0.76 per 748 Gallons delivered). Plus a fixed fee for the size of the pipe (22.67$ for a one inch pipe.)
Re: Scientists cook up new recipes for taking salt out of seawater
#34Earlier quoted context omitted.
Since seaweed can grow on salt water, can we perhaps engineer other crops to do the same?
That sounds like a recipe to completely destroy the land, for _any_ other crops, on which saltwater crops are farmed.
Re: Scientists cook up new recipes for taking salt out of seawater
#35"The current state-of-the-art in RO desalination works very well, but the cost of RO desalination driven by electricity is prohibitive," Why is taking salt out of sea water such a challenge?
Desalination is cheap in day to day terms, it’s the scale of water we use that’s the issue. Sure, we can get ~1,000 gallons of drinking water for 3$ via desalination. That works out to a monthly water bill increase of ~45$ for a family of 5. Unfortunately, crops need incredible amounts of water. So, growing corn etc with desalination would case food prices to ~quadruple.
Raising crops and live stock on deserts or other marginal farmland is a huge part of this.
Re: Scientists cook up new recipes for taking salt out of seawater
#36"The current state-of-the-art in RO desalination works very well, but the cost of RO desalination driven by electricity is prohibitive," Why is taking salt out of sea water such a challenge?
Desalination is cheap in day to day terms, it’s the scale of water we use that’s the issue. Sure, we can get ~1,000 gallons of drinking water for 3$ via desalination. That works out to a monthly water bill increase of ~45$ for a family of 5. Unfortunately, crops need incredible amounts of water. So, growing corn etc with desalination would case food prices to ~quadruple.
Re: Scientists cook up new recipes for taking salt out of seawater
#37I don’t think the problem we should be focusing on is how to remove salt from water, but what to do with the salt after it has been removed.
But that’s a lot of shipping. And I wonder if a better way is to capture the glacier melt runoff from Greenland before it can enter the ocean currents, and desalinate that brackish water. I’m not sure what the ratio of brine to fresh water is (ratio of boats in each direction) or the desal versus shipping costs.
Re: Scientists cook up new recipes for taking salt out of seawater
#38Earlier quoted context omitted.
None of this is at all relevant to my point. SFPUC charges over $4/ccf for wholesale water. This does not include distribution costs, and this is paid regardless of whether the water is sold, leaks, or is used for firefighting. If SFPUC’s wholesale customers purchased desalinated water and managed to escape their SFPUC contracts, they would eliminate this expense. edit: http://bawsca.org/water/rates/wholesale
That’s not exclusive price just per gallon of water. https://sfwater.org/modules/showdocument.aspx?documentid=774... Wholesale untreated water is 1.02$ per 1,000 gallons. Page 16: ( 0.76 per 748 Gallons delivered). Plus a fixed fee for the size of the pipe (22.67$ for a one inch pipe.)
edit: You’re looking at rate W-24. BAWSCA users seem to pay rate W-25, which is far higher. I don’t know exactly what the difference is.
Re: Scientists cook up new recipes for taking salt out of seawater
#39I'd love to see if you could use spent nuclear fuel (which is an excellent heat source) to just run one of these things continuously for a couple of decades :-).
Re: Scientists cook up new recipes for taking salt out of seawater
#40"The current state-of-the-art in RO desalination works very well, but the cost of RO desalination driven by electricity is prohibitive," Why is taking salt out of sea water such a challenge?
Is it maybe easier to capture the rain that falls from the sky instead? The rain that falls from the sky is salt-free, right? It then becomes salty when it touches the ocean?