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On May 6, 1959, the City of San José and City of Santa Clara signed a joint powers agreement, "Agreement between San Jose and Santa Clara Respecting Sewage Treatment Plant", [1] giving Santa Clara 20% ownership in exchange for helping to fund upgrades at the plant, which was renamed the San Jose/Santa Clara Water Pollution Control Plant. [2]
This produces high-quality water that exceeds state and federal drinking water standards. The GWRS has been operational since January 2008 and initially produced up to 70 million gallons of water daily. [5] [6] After the completion of an expansion in 2015, the plant produced 100 million gallons per day. It completed a final expansion in 2023 ...
Sewage treatment plant (a type of wastewater treatment plant) in La Crosse, Wisconsin. Wastewater treatment is a process which removes and eliminates contaminants from wastewater. It thus converts it into an effluent that can be returned to the water cycle. Once back in the water cycle, the effluent creates an acceptable impact on the environment.
The name of Fountain Valley refers to the very high water table in the area at the time the name was chosen, and the many corresponding artesian wells in the area. Early settlers constructed drainage canals to make the land usable for agriculture, which remained the dominant use of land until the 1960s, when construction of large housing tracts ...
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At Edmonston Pumping Plant it is pumped 1,926 ft (587 m) over the Tehachapi Mountains. [7] Water flows through the aqueduct in a series of abrupt rises and gradual falls. The water flows down a long segment, built at a slight grade, and arrives at a pumping station powered by Path 66 or Path 15. The pumping station raises the water, where it ...
"When domestic wastewater is treated, a solid by-product accumulates in the wastewater treatment plant and must be removed periodically to keep the plant operating properly. The collected material, called biosolids or more commonly "sewage sludge," is high in organic content, and contains moderate amounts of nutrients that are needed by plants.
The water district has about 150 miles of pipelines and operates 10 dams and reservoirs, three treatment plants, many groundwater recharge basins, three pump stations and an advanced water purification plant. [3] The district's three water treatment plants can produce as much as 210,000,000 US gallons (800,000 m 3) of drinking water a day.