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  2. Tricaine mesylate - Wikipedia

    en.wikipedia.org/wiki/Tricaine_mesylate

    It is easily soluble in water (both fresh and salt) but it drastically decreases the pH of water, increasing the acidity, which may be toxic for fish. Sodium bicarbonate can be used to buffer the solution to a pH range of 6.5-7.5. Usually an equal amount of buffer is added to attain a neutral pH. [5]

  3. Calcium reactor - Wikipedia

    en.wikipedia.org/wiki/Calcium_reactor

    Saltwater may have a pH of 7.8 or higher, so to reduce the pH carbon dioxide (CO 2) is used. The reaction formula is: CaCO 3 + H 2 O + CO 2 Ca 2+ + 2 HCO 3 −. Inside the reaction chamber, a calcium rich media , mainly CaCO 3, is forced into contact with water injected with carbon dioxide (CO 2) in order to create carbonic acid (H 2 CO 3).

  4. Fish hydrolysate - Wikipedia

    en.wikipedia.org/wiki/Fish_hydrolysate

    The liquid fish hydrolysate process minces the whole fish, then enzymatically digests, then grinds and liquifies the resulting product, known as gurry. Because it is a cold process, gurry putrefies more rapidly than fish emulsion and needs to be stabilized at a lower pH, requiring more acid.

  5. Pond loach - Wikipedia

    en.wikipedia.org/wiki/Pond_loach

    The pond loaches prefer a water pH of 6.5–8.0, but, as a temperate-climate freshwater species, will tolerate far more acidic conditions, even for extended amounts of time, with little negative reactions. This makes the pond loach a great choice for first-time aquariums and for those who want a hardy fish tank able to withstand a few mistakes.

  6. Aquarium filter - Wikipedia

    en.wikipedia.org/wiki/Aquarium_filter

    Aquarium filters are critical components of both freshwater and marine aquaria. [1] [2] [3] Aquarium filters remove physical and soluble chemical waste products from aquaria, simplifying maintenance. Furthermore, aquarium filters are necessary to support life as aquaria are relatively small, closed volumes of water compared to the natural ...

  7. Artificial seawater - Wikipedia

    en.wikipedia.org/wiki/Artificial_Seawater

    The tables below present an example of an artificial seawater (35.00‰ of salinity) preparation devised by Kester, Duedall, Connors and Pytkowicz (1967). [1] The recipe consists of two lists of mineral salts, the first of anhydrous salts that can be weighed out, the second of hydrous salts that should be added to the artificial seawater as a solution.

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