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  2. ‘That’s peace.’ Pierce County town goes back to its roots ...

    www.aol.com/peace-pierce-county-town-goes...

    The town gave up the public-water business around 2010 and instead gets its water from Lakewood. Now, its former waterworks at 2402 B. St. in Steilacoom are surrounded by apple trees and arugula.

  3. Rain garden - Wikipedia

    en.wikipedia.org/wiki/Rain_garden

    The first rain gardens were created to mimic the natural water retention areas that developed before urbanization occurred. The rain gardens for residential use were developed in 1990 in Prince George's County, Maryland, when Dick Brinker, a developer building a new housing subdivision had the idea to replace the traditional best management practices (BMP) pond with a bioretention area.

  4. Water garden - Wikipedia

    en.wikipedia.org/wiki/Water_garden

    Water garden or aquatic garden, is a term sometimes used for gardens, or parts of gardens, where any type of water feature (particularly garden ponds) is a principal or dominant element. The primary focus is on plants, but they will sometimes also house waterfowl , or ornamental fish , in which case it may be called a fish pond .

  5. Historical hydroculture - Wikipedia

    en.wikipedia.org/wiki/Historical_hydroculture

    This is a history of notable hydroculture phenomena. Ancient hydroculture proposed sites and modern revolutionary works are mentioned. Included in this history are all forms of aquatic and semi-aquatic based horticulture that focus on flora: aquatic gardening, semi-aquatic crop farming, hydroponics, aquaponics, passive hydroponics, and modern aeroponics.

  6. Hydroponics - Wikipedia

    en.wikipedia.org/wiki/Hydroponics

    The water is released over the plant's roots and then runs back into the reservoir below in a constantly recirculating system. As with deep water culture, there is an airstone in the reservoir that pumps air into the water via a hose from outside the reservoir. The airstone helps add oxygen to the water.

  7. Bioretention - Wikipedia

    en.wikipedia.org/wiki/Bioretention

    In laboratory experiments, bioretention cells removed 94%, 88%, 95%, and >95% of zinc, copper, lead, and cadmium, respectively from water with metal concentrations typical of stormwater runoff. While this is a great benefit for water quality improvement, bioretention systems have a finite capacity for heavy metal removal.