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The InterContinental Resort is the largest seawater air conditioning system to date, though there are several other, larger systems being planned. [10] Honolulu Seawater Air Conditioning was a project intended to use seawater air conditioning to deliver renewable cooling to commercial and residential properties in the downtown Honolulu area. [11]
If a location has excess water supplies or excess desalination capacity it can be used to reduce excessive electrical demand by utilizing water in affordable M-Cycle units. Due to high costs of conventional air conditioning units and extreme limitations of many electrical utility systems, M-Cycle units may be the only appropriate cooling ...
Water at 43 °F (6 °C) could provide more than enough air conditioning for a large building. Operating 8,000 hours per year in lieu of electrical conditioning selling for 5–10¢ per kilowatt-hour, it would save $200,000-$400,000 in energy bills annually.
Estimates put construction of a plant generating 30 million gallons of water per day at about $541.5 million, with a total cost of $757.5 million.
The Shevchenko BN-350, a former nuclear-heated desalination unit in Kazakhstan. The current trend in dual-purpose facilities is hybrid configurations, in which the permeate from reverse osmosis desalination is mixed with distillate from thermal desalination. Basically, two or more desalination processes are combined along with power production.
The InterContinental Resort is the largest seawater air conditioning system to date, though there are several other, larger systems being planned. [7] Honolulu Seawater Air Conditioning was a project intended to use seawater air conditioning to deliver renewable cooling to commercial and residential properties in the downtown Honolulu area.
Seawater desalination is usually more energy efficient by reverse osmosis than electrodialysis. [citation needed] However, for water streams with lower salt concentration electrodialysis may be the most energy efficient process. Additionally, water streams with very high salt concentrations, that cannot be separated by reverse osmosis, can be ...
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