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A method of using wastewater run-off from fish farms having no multi-use hydrosystem with water cleaning technologies

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
For industrial water use planning, water usage and drainage per unit product standards must be established. This would allow for the conservation of fresh water resources without limiting irrigation in the face of the world’s ever-increasing drinking water deficit. Because fish farms use a lot of water, businesses that raise fish in artificial ponds usually dig deep wells to get to the valuable subsurface water they need. Because they lack a reusable water system equipped with treatment technologies, they typically discharge water into the environment after a single use, resulting in marshes, soil salinization, or transportation with surface water flow to the brackish water ecosystem. In recent years, the use of groundwater for fishing has spread in Armenia’s Ararat plain, one of the country’s most important agricultural regions. The Ararat plain has a water shortage for irrigation, which is mostly addressed by increasing water intake volumes from Lake Sean, a critical source of drinking water. In the absence of a multi-use hydrosystem with cleaning technologies, a method of utilizing fish farm wastewater for irrigation purposes is proposed as a water-saving and environmental-protection approach.
Rocznik
Tom
Strony
155--161
Opis fizyczny
Bibliogr. 7 poz., rys.
Twórcy
  • Shushi University of Technology
  • National University of Architecture and Construction of Armenia, Armenia
  • Armenian National Agrarian University, Armenia
  • Shushi University of Technology
Bibliografia
  • 1.Aquaculture Sector Review Armenia. https://openknowledge.worldbank.org/bitstream/handle/10986/22918/Aquaculture0sector0review000Armenia.pdf?sequence=1 (10.10.2022).
  • 2.Becker, E., Jiusti, J., Minatto, F.D., Delavi, D.G.G., Montedo, O.R.K.  Noni Jr., A. (2017) Use of mechanically-activated kaolin to replace ball clay in engobe for a ceramic tile. Cerâmica, 63, 295-302.
  • 3.Margaryan, A.Ya., Barkhudaryan, A.M., & Tokmajyan V.H. (2011) On a problem of hydrometry of fountain wells. Bulletin of Yerevan Architecture and Construction State University, 2, 13-18.
  • 4.Pulatov, Ya.E., (2017) Water-saving irrigation technologies and water use efficiency in agriculture. Ecology and Construction, 4, 21-26.
  • 5.Resolution N61-A 01.03.2007 of the Government of the Republic of Armenia. “On setting tariffs for providing irrigation water supply services by closed joint-stock companies «Sevan-Hrazdan Water Intake», «Akhurian-Araks-Water Intake», «Debet-Aghstev-Water Intake», «Vorotan-Arpa-Water Intake»”.
  • 6.Standard of the Republic of Armenia - “Method of water flow measurement in aqueducts with a mixed mode of movement”. AST 336-2011, registered 16.05.2011, N889-2011.
  • 7.Tucker, C.S., Pote, J.W., Wax, C.L. & Brown, T.W. (2017) Improving water-use efficiency for Ictalurid catfish pond aquaculture in Northwest Mississippi, USA. Aquaculture Research, 48, 447-458.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-340387de-b6da-437e-8189-a682cb2d4730
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