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- W4312970930 abstract "Abstract Abiotic parameters that are critical for aquaculture include temperature, photoperiod, turbidity, salinity, dissolved oxygen (DO) and carbon dioxide (CO2), pH, and water hardness. Temperature controls metabolic and growth rates through the Q10 effect. Temperature control is only feasible in closed recirculating aquaculture systems (RAS) and heating is easier and more economical than cooling. Photoperiod is critical for reproduction and can be manipulated in hatcheries to maximize fecundity and shorten breeding intervals, enable continuous feeding, and prevent hypoxia. Turbidity is a measure of undissolved (suspended) particles and a direct indicator of water quality and eutrophication. Salinity is a measure of the concentration of dissolved inorganic ions (salts) while osmolality includes the concentration of both inorganic ions and organic osmolytes in aqueous fluids. Many aquaculture animals have relatively wide salinity and temperature-tolerances, that is, they are euryhaline and eurythermal, have been selected for high environmental resilience during domestication, and perform well in captivity under a wide range of conditions. DO concentration must be monitored closely in all aquaculture systems because it is much lower than oxygen levels in air and subject to daily fluctuations; DO should always be maintained at or near saturation levels and hypoxia must be avoided by using aeration devices. Dissolved CO2, pH, and water hardness are closely interrelated abiotic parameters referred to as the aquatic carbonate system. This system is strongly impacted by liming, which is a common procedure before stocking aquaculture ponds." @default.
- W4312970930 created "2023-01-05" @default.
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- W4312970930 date "2022-09-06" @default.
- W4312970930 modified "2023-10-16" @default.
- W4312970930 title "Abiotic parameters" @default.
- W4312970930 cites W172110437 @default.
- W4312970930 doi "https://doi.org/10.1093/oso/9780198850229.003.0016" @default.
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